Updated on 2024/09/12

Information

 

写真a

 
FUJIBUCHI TOSHIOH
 
Organization
Faculty of Medical Sciences Department of Health Sciences Professor
Central Institute of Radioisotope Science and Safety Management (Joint Appointment)
School of Medicine Department of Health Sciences(Joint Appointment)
Graduate School of Medical Sciences Department of Health Sciences(Joint Appointment)
Title
Professor
Contact information
メールアドレス
Tel
0926426721
Profile
Educate students related to radiological technology to students who wants to work in a medical field or a medical-related company as a radiological technologist. Research related to radiation protection in the medical field, protection of radiation workers, and development of educational materials for radiological technology.

Research Areas

  • Life Science / Radiological sciences

Degree

  • Ph.D in Medicine

Research History

  • 2000.4-2003.1 株式会社千代田テクノル

    2000.4-2003.1 株式会社千代田テクノル

  • 2008.6-2013.8-茨城県立医療大学 2003.5-2008.5-千葉大学医学部附属病院放射線部 2003.2-2003.4-筑波大学附属病院放射線部

Research Interests・Research Keywords

  • Research theme:放射線防護

    Keyword:放射線防護

    Research period: 2024

  • Research theme:Medical Health physics, protecting patient and medical staff from radiation exposure, monitoring of the exposures, radioactive waste management, Visualization of Radiation

    Keyword:Health physics,Radiation exposure, monitoring of the exposures, radioactive waste management, virtual reality, Monte Carlo simulation

    Research period: 2013.9 - 2022.4

Awards

  • 論文支援功労賞

    2024.4   日本放射線技術学会  

  • 福岡県知事表彰 功績賞

    2019.6   福岡県   医療従事者被ばく管理のためのエネルギー補償型ワイヤレス線量モニタリングシステムの開発

  • 放射線影響研究 奨励賞

    2017.4   放射線影響協会   放射線治療による2次中性子線の影響および放射化に関する研究

  • 平成27年度がん研究助成金 奨励賞

    2015.12   福岡県すこやか健康事業団   スーパーコンピュータを利用した放射線治療の高速モンテカルロシミュレーション

  • JJR Excellent Reviewer Award in 2013

    2014.4  

  • 技術奨励賞

    2012.12   日本放射線安全管理学会  

  • 第45回研究発表会 優秀ポスター賞

    2012.6   日本保健物理学会  

  • 日本放射線技術学会 放射線防護部門 技術奨励賞

    2011.4   日本放射線技術学会  

  • Radiological Physics and Technology誌 論文賞土井賞

    2010.4   日本放射線技術学会、日本医学物理学会  

  • 核医学会賞(技術部門)

    2007.4   第45回千葉核医学研究会  

  • 関東部会 新人賞

    2007.2   放射線防護部門 技術新人賞  

  • 放射線防護部門 技術新人賞

    2006.4   日本放射線技術学会  

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Papers

  • Optimum delineation of skin structure for dose calculation with the linear Boltzmann transport equation algorithm in radiotherapy treatment planning.

    Hamada K, Fujibuchi T, Arakawa H

    Radiological physics and technology   2024.9   ISSN:1865-0333

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    DOI: 10.1007/s12194-024-00840-8

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  • Evaluation of radiation protection effectivity in a cardiac angiography room using visualized scattered radiation distribution

    Fujibuchi, T; Nakashima, M; Arakawa, H; Miyazaki, H; Anam, C

    JOURNAL OF RADIOLOGICAL PROTECTION   44 ( 3 )   2024.9   ISSN:0952-4746 eISSN:1361-6498

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    Language:English   Publisher:Journal of Radiological Protection  

    In this study, we devised a radiation protection tool specifically designed for healthcare professionals and students engaged in cardiac catheterization to easily monitor and evaluate scattered radiation distribution across diverse C-arm angles and arbitrary physician associated staff positions—scrub nurse and technologist positions. In this study, scattered radiation distributions in an angiography room were calculated using the Monte Carlo simulation of particle and heavy ion transport code system (PHITS) code. Four visualizations were performed under different C-arm angles with and without radiation protection: (1) a dose profile, (2) a 2D cross-section, (3) a 3D scattered radiation distribution, and (4) a 4D scattered radiation distribution. The simulation results detailing the scattered radiation distribution in PHITS were exported in Visualization Toolkit format and visualized through the open-source visualization application ParaView for analysis. Visualization of the scattered dose showed that dose distribution depends on the C-arm angle and the x-ray machine output parameters (kV, mAs s−1, beam filtration) which depend upon beam angulation to the patient body. When irradiating in the posterior-anterior direction, the protective curtain decreased the dose by 62% at a point 80 cm from the floor, where the physician’s gonads are positioned. Placing the protection board close to the x-ray tube reduced the dose by 24% at a location 160 cm from the floor, where the lens of the eye is situated. Notably, positioning the protection board adjacent to the physician resulted in a 95.4% reduction in incident air kerma. These visualization displays can be combined to understand the spread and direction of the scattered radiation distribution and to determine where and how to operate and place radiation protection devices, accounting for the different beam angulations encountered in interventional cases. This study showed that scatter visualization could be a radiation protection teaching aid for students and medical staff in angiography rooms.

    DOI: 10.1088/1361-6498/ad6d75

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  • Developing simulation-based learning application for radiation therapy students at pre-clinical stage

    Hasoomi, N; Fujibuchi, T; Arakawa, H

    JOURNAL OF MEDICAL IMAGING AND RADIATION SCIENCES   55 ( 3 )   101412   2024.9   ISSN:1939-8654

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    Language:English   Publisher:Journal of Medical Imaging and Radiation Sciences  

    Introduction: Simulation-based education has been particularly valuable as a preclinical training method that adequately prepares students for clinical practice, including simulation in educational programs enhances the quality of learning outcomes. However, relevant previous research has exhibited several crucial limitations, with most of them having focused solely on the setup procedures. This study aimed to outline the development of an educational application in radiationtherapy and emphasizes the essential factors that radiation therapist technologists(RTTs) must consider in the treatment room from the perspective of experienced RTTs. Method: We connected the virtual pendants to the linear accelerator components using C# programming and Unity. Customized scripts were assigned to specific linear accelerator (LINAC) functions, and the patient and RTT avatars were developed. We also included audio feedback for the realistic gantry movement sounds. Result: This study outlines various aspects of radiotherapy procedures duringtreatment, such as the simulation of patient positioning, treatment fields, and pendantfunctions, aimed toward enabling the effective use of virtual reality technology inradiation therapy. Discussion: This study explores the potential of an avatar-based app for radiotherapy education, providing foundational data for future trials. Conclusion: Simulation learning is the most advantageous pre-clinical instrument for equipping students with the skills necessary for clinical practice. This study's resultsare expected to facilitate radiotherapy students’ adoption of clinical replacement applications and improve collaborative partnerships and knowledge sharing. Notably, this application complements traditional learning methods, further enhancing the overall educational experience.

    DOI: 10.1016/j.jmir.2024.04.005

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  • The Usefulness of a Virtual Environment-Based Patient Setup Training System for Radiation Therapy

    Fujibuchi T., Kaneko K., Arakawa H., Okada Y.

    Journal of Imaging   10 ( 8 )   2024.8

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    Language:English   Publisher:Journal of Imaging  

    In radiation therapy, patient setup is important for improving treatment accuracy. The six-axis couch semi-automatically adjusts the patient’s position; however, adjusting the patient to twist is difficult. In this study, we developed and evaluated a virtual reality setup training tool for medical students to understand and improve their patient setup skills for radiation therapy. First, we set up a simulated patient in a virtual space to reproduce the radiation treatment room. A gyro sensor was attached to the patient phantom in real space, and the twist of the phantom was linked to the patient in the virtual space. Training was conducted for 24 students, and their operation records were analyzed and evaluated. The training’s efficacy was also evaluated through questionnaires provided at the end of the training. The total time required for patient setup tests before and after training decreased significantly from 331.9 s to 146.2 s. As a result of the questionnaire regarding the usability of training to the trainee, most were highly evaluated. We found that training significantly improved students’ understanding of the patient setup. With the proposed system, trainees can experience a simulated setup that can aid in deepening their understanding of radiation therapy treatments.

    DOI: 10.3390/jimaging10080184

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  • A novel method for developing contrast-detail curves from clinical patient images based on statistical low-contrast detectability

    Anam, C; Naufal, A; Sutanto, H; Fujibuchi, T; Dougherty, G

    BIOMEDICAL PHYSICS & ENGINEERING EXPRESS   10 ( 4 )   2024.7   ISSN:2057-1976

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    Purpose. To develop a method to extract statistical low-contrast detectability (LCD) and contrast-detail (C-D) curves from clinical patient images. Method. We used the region of air surrounding the patient as an alternative for a homogeneous region within a patient. A simple graphical user interface (GUI) was created to set the initial configuration for region of interest (ROI), ROI size, and minimum detectable contrast (MDC). The process was started by segmenting the air surrounding the patient with a threshold between −980 HU (Hounsfield units) and −1024 HU to get an air mask. The mask was trimmed using the patient center coordinates to avoid distortion from the patient table. It was used to automatically place square ROIs of a predetermined size. The mean pixel values in HU within each ROI were calculated, and the standard deviation (SD) from all the means was obtained. The MDC for a particular target size was generated by multiplying the SD by 3.29. A C-D curve was obtained by iterating this process for the other ROI sizes. This method was applied to the homogeneous area from the uniformity module of an ACR CT phantom to find the correlation between the parameters inside and outside the phantom, for 30 thoracic, 26 abdominal, and 23 head images. Results. The phantom images showed a significant linear correlation between the LCDs obtained from outside and inside the phantom, with R2 values of 0.67 and 0.99 for variations in tube currents and tube voltages. This indicated that the air region outside the phantom can act as a surrogate for the homogenous region inside the phantom to obtain the LCD and C-D curves. Conclusion. The C-D curves obtained from outside the ACR CT phantom show a strong linear correlation with those from inside the phantom. The proposed method can also be used to extract the LCD from patient images by using the region of air outside as a surrogate for a region inside the patient.

    DOI: 10.1088/2057-1976/ad4b20

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  • The Accident at Tokyo Electric Power Company Incorporated's Fukushima Daiichi Nuclear Power Station: AReview of Radiation-Exposed Medical Care and Waste (Secondary Publication)

    Fujibuchi, T; Iwaoka, K; Shimada, Y; Nabatame, K

    JOURNAL OF RADIATION PROTECTION AND RESEARCH   49 ( 2 )   65 - 67   2024.6   ISSN:2508-1888 eISSN:2466-2461

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    Publisher:Journal of Radiation Protection and Research  

    This review is based on articles published in Japanese Journal of Health Physics on “Radiation-exposed medical care and waste” related to Tokyo Electric Power Company Incorporated (TEPCO)’s Fukushima Daiichi Nuclear Power Station accident. Here, we have considered three original articles; one technical data, one special article, one 50th anniversary article, one preface, three topics, and two cases of From Japan to the World (J to W). These articles have reported the system and standards that were established after the accident. Moreover, they have summarized rare experiences such as the fumbling response at the time and the evaluation of samples in that disaster. These articles constitute valuable records of the situation.

    DOI: 10.14407/jrpr.2023.00738

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  • Radiation-training system with a custom survey-meter mock-up in a browser-based mixed reality environment

    Arakawa, H; Fujibuchi, T; Kaneko, K; Okada, Y; Tomisawa, T

    NUCLEAR ENGINEERING AND TECHNOLOGY   56 ( 6 )   2428 - 2435   2024.6   ISSN:1738-5733

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    Publisher:Nuclear Engineering and Technology  

    Training for radiation protection and control requires a visual understanding of radiation, which cannot be perceived by the human senses. Trainees must also master the effective use of measuring instruments. Traditionally, such training has exposed trainees to radiation sources. Here, we present a novel e-training strategy that enables safe, exposure-free handling of a radiation measuring tool called a survey meter. Our mixed reality radiation-training system merges the physical world with a digital one. Collaborating with a mixed reality headset (HoloLens 2), this system constructs a mock-up of a survey meter in real-world space. The HoloLens 2 employs a browser-based application to visualize radiation and to simulate/share the use of the survey meter, including its physical movements. To provide a dynamic learning experience, the system adjusts the survey-meter mock-up readings according to the operator's movements, distance from the radiation source, the response time of survey meter, and shielding levels. Through this approach, we expect that trainees will acquire practical skills in interpreting survey-meter readings and gain a visual understanding of radiation in real-world situations.

    DOI: 10.1016/j.net.2024.01.057

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  • Simulating the head of a TrueBeam linear particle accelerator and calculating the photoneutron spectrum on the central axis of a 10-MV photon using particle and heavy-ion transport system code

    Quoc, SD; Fujibuchi, T; Arakawa, H; Hamada, K

    RADIATION PROTECTION DOSIMETRY   200 ( 8 )   779 - 790   2024.5   ISSN:0144-8420 eISSN:1742-3406

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    Language:English   Publisher:Radiation Protection Dosimetry  

    Photon energy is higher than the (γ,n) threshold, allowing it to interact with the nuclei of materials with high z properties and liberate fast neutrons. This represents a potentially harmful source of radiation for humans and the environment. This study validated the Monte Carlo simulation, using the particle and heavy-ion transport code system (PHITS) on a TrueBeam 10-MV linear particle accelerator's head shielding model and then used this PHITS code to simulate a photo-neutron spectrum for the transport of the beam. The results showed that, when comparing the simulated to measured PDD and crosslines, 100% of the γ-indexes were <1 (γ3%/3mm) for both simulations, for both phase-space data source and a mono energy source. Neutron spectra were recorded in all parts of the TrueBeam's head, as well as photon neutron spectra at three points on the beamline.

    DOI: 10.1093/rpd/ncae124

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  • Investigation of patient release examination training in nuclear medicine using mixed reality Reviewed International journal

    Hiroyuki Arakawa, Toshioh Fujibuchi, Yoshihiro Okada, Kosuke Kaneko, Toshiko Tomisawa

    Journal of Advanced Simulation in Science and Engineering   11 ( 1 )   125 - 135   2024.4

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    DOI: https://doi.org/10.15748/jasse.11.125

    Other Link: https://www.jstage.jst.go.jp/article/jasse/11/1/11_125/_article

  • Developing simulation-based learning application for radiation therapy students at pre-clinical stage Reviewed International journal

    Nafise Hasoomi, Toshioh Fujibuchi, Hiroyuki Arakawa

    Journal of Medical Imaging and Radiation Sciences   2024.4

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  • A practical method for slice spacing measurement using AAPM CT performance phantom Reviewed International journal

    Choirul Anam, Ariij Naufal, Yanurita Dwihapsari, Toshioh Fujibuchi, Geoff Dougherty

    Journal of Medical Physics   49   103 - 109   2024.3

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  • Directional vector visualization of scattered rays in mobile c-arm fluoroscopy

    Hizukuri, K; Fujibuchi, T; Arakawa, H

    RADIOLOGICAL PHYSICS AND TECHNOLOGY   17 ( 1 )   288 - 296   2024.3   ISSN:1865-0333 eISSN:1865-0341

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    Language:English   Publisher:Radiological Physics and Technology  

    Previous radiation protection-measure studies for medical staff who perform X-ray fluoroscopy have employed simulations to investigate the use of protective plates and their shielding effectiveness. Incorporating directional information enables users to gain a clearer understanding of how to position protective plates effectively. Therefore, in this study, we propose the visualization of the directional vectors of scattered rays. X-ray fluoroscopy was performed; the particle and heavy-ion transport code system was used in Monte Carlo simulations to reproduce the behavior of scattered rays in an X-ray room by reproducing a C-arm X-ray fluoroscopy system. Using the calculated results of the scattered-ray behavior, the vectors of photons scattered from the phantom were visualized in three dimensions. A model of the physician was placed on the directional vectors and dose distribution maps to confirm the direction of the scattered rays toward the physician when the protective plate was in place. Simulation accuracy was confirmed by measuring the ambient dose equivalent and comparing the measured and calculated values (agreed within 10%). The directional vectors of the scattered rays radiated outward from the phantom, confirming a large amount of backscatter radiation. The use of a protective plate between the patient and the physician’s head part increased the shielding effect, thereby enhancing radiation protection for the physicians compared to cases without the protective plate. The use of directional vectors and the surrounding dose-equivalent distribution of this method can elucidate the appropriate use of radiation protection plates.

    DOI: 10.1007/s12194-024-00779-w

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  • Radiation-Training System with a Custom Survey-Meter Mock-up in a Browser-based Mixed Reality Environment   Reviewed International journal

    2024.2

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    DOI: https://doi.org/10.1016/j.net.2024.01.057

  • Directional Vector Visualization of Scattered Rays in Mobile C-arm Fluoroscopy Reviewed International journal

    Kyoko Hizukuri, Toshioh Fujibuchi, Hiroyuki Arakawa

    Radiological Physics and Technology   2024.1

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    DOI: https://doi.org/10.1016/j.ejmp.2023.103181

  • A Practical Method for Slice Spacing Measurement Using the American Association of Physicists in Medicine Computed Tomography Performance Phantom

    Anam, C; Naufal, A; Dwihapsari, Y; Fujibuchi, T; Dougherty, G

    JOURNAL OF MEDICAL PHYSICS   49 ( 1 )   103 - 109   2024.1   ISSN:0971-6203 eISSN:1998-3913

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    Language:English   Publisher:Journal of Medical Physics  

    Background: The slice spacing has a crucial role in the accuracy of computed tomography (CT) images in sagittal and coronal planes. However, there is no practical method for measuring the accuracy of the slice spacing. Purpose: This study proposes a novel method to automatically measure the slice spacing using the American Association of Physicists in Medicine (AAPM) CT performance phantom. Methods: The AAPM CT performance phantom module 610-04 was used to measure slice spacing. The process of slice spacing measurement involves a pair of axial images of the module containing ramp aluminum objects located at adjacent slice positions. The middle aluminum plate of each image was automatically segmented. Next, the two segmented images were combined to produce one image with two stair objects. The centroid coordinates of two stair objects were automatically determined. Subsequently, the distance between these two centroids was measured to directly indicate the slice spacing. For comparison, the slice spacing was calculated by accessing the slice position attributes from the DICOM header of both images. The proposed method was tested on phantom images with variations in slice spacing and field of view (FOV). Results: The results showed that the automatic measurement of slice spacing was quite accurate for all variations of slice spacing and FOV, with average differences of 9.0% and 9.3%, respectively. Conclusion: A new automated method for measuring the slice spacing using the AAPM CT phantom was successfully demonstrated and tested for variations of slice spacing and FOV. Slice spacing measurement may be considered an additional parameter to be checked in addition to other established parameters.

    DOI: 10.4103/jmp.jmp_155_23

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  • Evaluation of Transmitted X-ray Spectrum, Lead Equivalent, and Uniformity of Radiation Protective Clothing Made of Lead-containing and Lead-free Materials

    Yano Yuji, Fujibuchi Toshioh, Arakawa Hiroyuki

    Japanese Journal of Radiological Technology   advpub ( 0 )   2024   ISSN:03694305 eISSN:18814883

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    Language:Japanese   Publisher:Japanese Society of Radiological Technology  

    <p> <i>Purpose</i>: The purpose of this study was to evaluate the protective performance of several new radiation-protective clothing and to clarify issues of quality control. <i>Methods</i>: The composition of the shielding elements was analyzed using X-ray fluorescence analysis, and the energy spectrum of transmitted X-rays was measured. Furthermore, the lead equivalent and uniformity were measured from the transmitted X-ray doses according to Japanese industrial standards (JIS). Uniformity was evaluated by transmitting X-ray images of each radiation protective clothing in addition to the conventional method. <i>Results</i>: The energy spectrum showed K-absorption edges of lead, bismuth, tin, etc., which were detected in the composition analysis. The multi-layered protective material maintained higher shielding ability at high tube voltages. In addition, X-ray images of the radiation-protective clothing showed uneven density and dots, and the differences in uniformity measurement methods and points that didn’t meet the required shielding capacity were seen. <i>Conclusion</i>: The current JIS does not allow accurate evaluation of the lead equivalent and uniformity, so visual evaluation of X-ray images is important. It is necessary to establish standardized standards for quality control performed by each facility.</p>

    DOI: 10.6009/jjrt.2024-1473

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  • Investigation of patient release examination training in nuclear medicine using mixed reality

    Arakawa Hiroyuki, Fujibuchi Toshioh, Okada Yoshihiro, Kaneko Kosuke, Tomisawa Toshiko

    Journal of Advanced Simulation in Science and Engineering   11 ( 1 )   125 - 135   2024   eISSN:21885303

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    Language:English   Publisher:Japan Society for Simulation Technology  

    <p>In nuclear medicine, assessing residual radioactivity before patient release is essential. It is typically assessed by radiation detection with a survey meter. This protocol inadvertently exposes to radiation and requires proficiency in the use of the survey meter. This study developed a mixed reality system designed to provide exposure-free training during patient release examination. This system involves a virtual radiation source with visualized radiation emission on the corresponding part of the human mannequin. The time response characteristics of the survey meter to changes with the time constant in addition to the source distance were simulated in realtime.</p>

    DOI: 10.15748/jasse.11.125

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  • A novel approach to predict acute radiation dermatitis in patients with head and neck cancer using a model based on Bayesian probability

    Keisuke Hamada, Toshioh Fujibuchi, Hiroyuki Arakawa, Yuichi Yokoyama, Naoki Yoshida, Hiroki Ohura, Naonobu Kunitake, Muneyuki Masuda, Takeo Honda, Satoru Tokuda, Makoto Sasaki

    Physica Medica   116   103181 - 103181   2023.12   ISSN:1120-1797 eISSN:1724-191X

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    Language:English   Publishing type:Research paper (scientific journal)   Publisher:Elsevier BV  

    DOI: 10.1016/j.ejmp.2023.103181

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  • Review of Articles Related to the Accident of TEPCO’s Fukushima Daiichi Nuclear Power Station Published on Japanese Journal of Health Physics: Radiation Medicine, Radioactive Waste

    FUJIBUCHI Toshioh, IWAOKA Kazuki, SHIMADA Yoko, NABATAME Kuniaki

    Japanese Journal of Health Physics   58 ( 2 )   73 - 75   2023.8   ISSN:03676110 eISSN:18847560

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    Language:Japanese   Publisher:Japan Health Physics Society  

    <p>Regarding “radiation-exposed medical care and waste” in articles related to the TEPCO’s Fukushima Daiichi Nuclear Power Plant accident published in “Japanese Journal of Health Physics” magazine, (1) 3 original articles, (2) 1 technical data, (3) 1 special article, (4) 1 50th anniversary article, (5) 1 preface, (6) 3 topics, (7) From Japan to the World (JtoW) were two cases. These articles include the contents related to the system and standards that were established after the accident. Rare experiences such as the fumbling response at the time and the evaluation of samples in the disaster situation are summarized. These materials are valuable records.</p>

    DOI: 10.5453/jhps.58.73

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  • Trends and Future Prospects of AI Technology Utilization Research in JSRT  —Challenges to Tackle and the Expected Role of Our Academic Society !?—

    Kawashita Ikuo, Hayashi Norio, Tominaga Masahide, Fujibuchi Toshioh, Magome Taiki, Yagahara Ayako, Okuda Koichi, Shinohara Norimitsu

    Japanese Journal of Radiological Technology   79 ( 8 )   838 - 850   2023.8   ISSN:03694305 eISSN:18814883

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    DOI: 10.6009/jjrt.2023-2241

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  • Impact of Noise Level on the Accuracy of Automated Measurement of CT Number Linearity on ACR CT and Computational Phantoms Reviewed International journal

    Choirul Anam, Riska Amilia, Ariij Naufal, Heri Sutanto, Yanurita Dwihapsari, Toshioh Fujibuchi, Geoff Dougherty

    Journal of Biomedical Physics and Engineering   13 ( 4 )   353 - 362   2023.7   ISSN:2251-7200

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    DOI: 10.31661/jbpe.v0i0.2302-1599

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  • Dose estimation for cone-beam computed tomography in image-guided radiation therapy for pelvic cancer using adult mesh-type reference computational phantoms

    Cumur, C; Fujibuchi, T; Arakawa, H; Hamada, K

    RADIOLOGICAL PHYSICS AND TECHNOLOGY   16 ( 2 )   203 - 211   2023.6   ISSN:1865-0333 eISSN:1865-0341

  • 成人用mesh-type reference computational phantomを用いた骨盤癌に対する画像誘導放射線治療におけるコーンビームCTの線量推定(Dose estimation for cone-beam computed tomography in image-guided radiation therapy for pelvic cancer using adult mesh-type reference computational phantoms)

    Cumur Ceyda, Fujibuchi Toshioh, Arakawa Hiroyuki, Hamada Keisuke

    Radiological Physics and Technology   16 ( 2 )   203 - 211   2023.6   ISSN:1865-0333

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    Language:English   Publisher:(公社)日本放射線技術学会  

    コーンビームCT(CBCT)を線形加速器(LINAC)内にインストールすることにより放射線治療への使用が拡大していることから、CBCT撮像装置により生じる患者線量を調べた。骨盤照射にルーチンで用いられる男性用及び女性用mesh-type reference computational phantom(MRCP)と骨盤CBCTモードに対する臓器線量と実効線量を推定し、point-dose計測により確認した。男性用MRCPに対する推定臓器線量はraised armの有り無しで各々0.00286~35.6mGyと0.00286~35.1mGyであり、女性用MRCPに対する推定臓器線量はraised armの有り無しで各々0.00933~39.5mGyと0.00931~39.0mGyであった。骨盤CBCTモードで照射時の実効線量は、男性用MRCPに対してraised armの有り無しで各々4.25mSvと4.16mSvであり、女性用MRCPに対してraised armの有り無しで各々7.66mSvと7.48mSvであった。

  • Dose estimation for cone-beam computed tomography in image-guided radiation therapy for pelvic cancer using adult mesh-type reference computational phantoms.

    Ceyda Cumur, Toshioh Fujibuchi, Hiroyuki Arakawa, Keisuke Hamada

    Radiological physics and technology   16 ( 2 )   203 - 211   2023.6

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    The use of cone-beam computed tomography (CBCT) is expanding owing to its installation in linear accelerators for radiation therapy, and the imaging dose induced by this system has become the center of attention. Here, the dose to patients caused by the CBCT imager was investigated. Organ doses and effective doses for male and female mesh-type reference computational phantoms (MRCPs) and pelvis CBCT mode, routinely used for pelvic irradiation, were estimated using the Particle and Heavy Ion Transport Code System. The simulation results were confirmed based on the point-dose measurements. The estimated organ doses for male MRCPs with/without raised arms and for female MRCPs with/without raised arms were 0.00286-35.6 mGy, 0.00286-35.1 mGy, 0.00933-39.5 mGy, and 0.00931-39.0 mGy, respectively. The anticipated effective doses for male MRCPs with/without raised arms and female MRCPs with/without raised arms irradiated by pelvis CBCT mode were 4.25 mSv, 4.16 mSv, 7.66 mSv, and 7.48 mSv, respectively. The results of this study will be useful for patients who undergo image-guided radiotherapy with CBCT. However, because this study only covered one type of cancer with one type of imager, and image quality was not considered, more studies should be conducted to estimate the radiation dose from imaging devices in radiation therapy.

    DOI: 10.1007/s12194-023-00708-3

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  • Dose estimation for cone-beam computed tomography in image-guided radiation therapy for pelvic cancer using adult mesh-type reference computational phantoms

    Ceyda Cumur, Toshioh Fujibuchi, Hiroyuki Arakawa, Keisuke Hamada

    RADIOLOGICAL PHYSICS AND TECHNOLOGY   16 ( 2 )   203 - 211   2023.6   ISSN:1865-0333 eISSN:1865-0341

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    The use of cone-beam computed tomography (CBCT) is expanding owing to its installation in linear accelerators for radiation therapy, and the imaging dose induced by this system has become the center of attention. Here, the dose to patients caused by the CBCT imager was investigated. Organ doses and effective doses for male and female mesh-type reference computational phantoms (MRCPs) and pelvis CBCT mode, routinely used for pelvic irradiation, were estimated using the Particle and Heavy Ion Transport Code System. The simulation results were confirmed based on the point-dose measurements. The estimated organ doses for male MRCPs with/without raised arms and for female MRCPs with/without raised arms were 0.00286-35.6 mGy, 0.00286-35.1 mGy, 0.00933-39.5 mGy, and 0.00931-39.0 mGy, respectively. The anticipated effective doses for male MRCPs with/without raised arms and female MRCPs with/without raised arms irradiated by pelvis CBCT mode were 4.25 mSv, 4.16 mSv, 7.66 mSv, and 7.48 mSv, respectively. The results of this study will be useful for patients who undergo image-guided radiotherapy with CBCT. However, because this study only covered one type of cancer with one type of imager, and image quality was not considered, more studies should be conducted to estimate the radiation dose from imaging devices in radiation therapy.

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  • A method for quantification of noise non-uniformity in computed tomography images: A computational study Reviewed International journal

    Choirul Anam, Ariij Naufal, Kosuke Matsubara, Toshioh Fujibuchi, Geoff Dougherty

    Journal of Physics and Its Applications   5 ( 2 )   48 - 57   2023.5

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    DOI: https://doi.org/10.14710/jpa.v5i2.17615

  • Application of liquid scintillation light guide (LSLG) to scattered X-ray measurement from dental panoramic radiography system.

    Nomura K, Takahashi M, Fujibuchi T, Koike Y, Hara M, Higaki S, Kobayashi I, Yoshino S

    Applied radiation and isotopes : including data, instrumentation and methods for use in agriculture, industry and medicine   194   110720   2023.4   ISSN:0969-8043

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    DOI: 10.1016/j.apradiso.2023.110720

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  • Prevention and Repair of Ultraviolet B-Induced Skin Damage in Hairless Mice via Transdermal Delivery of Growth Factors Immobilized in a Gel-in-Oil Nanoemulsion

    Zhang, Y; Inoue, Y; Fardous, J; Doi, R; Ijima, T; Fujibuchi, T; Yamashita, YI; Aishima, S; Ijima, H

    ACS OMEGA   8 ( 10 )   9239 - 9249   2023.3   ISSN:2470-1343

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    Ultraviolet (UV) radiation from the sun or artificial sources is one of the primary causes of skin damage, including sunburns, tanning, erythema, and skin cancer. Among the three different types of UV rays, UVB rays have a medium wavelength that can penetrate the epidermal layer of the skin, resulting in sunburn, suntan, blistering, and melanoma in case of chronic exposure. This study aimed to evaluate the preventive and therapeutic effects of a gel-in-oil nanogel dispersion (G/O-NGD) as a transdermal delivery biomolecular carrier for skin damage caused by UVB light. The efficacy of this carrier against UVB-induced skin damage was investigated in vivo by delivering different growth factors (GFs) encapsulated in a G/O-NGD. Artificial UVB light was used to induce skin damage in nude mice, followed by the transdermal application of five GF [vascular endothelial growth factor (VEGF), basic fibroblast growth factor (bFGF), epidermal growth factor (EGF), transforming growth factor (TGF)-1, and insulin-like growth factor (IGF)-α]-immobilized G/O-NGD. Among these GFs, VEGF and bFGF promoted angiogenesis, while EGF, TGF-1, and IGF-α promoted the repair and regeneration of damaged cells. The results showed that G/O-NGD was superior to heparin-immobilized G/O-NGD in reducing UVB-induced skin damage, such as erythema, epidermal water reduction, inflammation, and dermis thickening. In addition, G/O-NGD could prevent and treat abnormal follicle proliferation caused by UVB rays and exhibited potential to repair lipid glands. Overall, our results demonstrate the potential of G/O-NGDs for the treatment of UVB-induced skin damage.

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  • Dose estimation for cone-beam computed tomography in image-guided radiation therapy for pelvic cancer using adult mesh-type reference computational phantoms Reviewed International journal

    Ceyda Cumur, Toshioh Fujibuchi, Hiroyuki Arakawa, Keisuke Hamada

    Radiological Physics and Technology   2023.3

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    DOI: https://doi.org/10.1007/s12194-023-00708-3

  • Prevention and repair of ultraviolet B-induced skin damage in hairless mice via transdermal delivery of growth factors immobilized in a gel-in-oil nanoemulsion Reviewed International journal

    Zhang Yi, Inoue Yuuta, Fardous Jannatul, Doi Ryota, Ijima Takahiro, Fujibuchi Toshioh, Yamashita Yo-ichi, Aishima Shinichi, Ijima Hiroyuki

    ACS Omega   2023.3

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  • Application of liquid scintillation light guide (LSLG) to scattered X-ray measurement from dental panoramic radiography system Reviewed International journal

    Kiyoshi Nomura, Masashi Takahashi, Toshioh Fujibuch, Yuya Koike, Masayuki Hara, Shogo Higaki, Ikuo Kobayashi, Souichirou Yoshino

    Applied Radiation and Isotopes   194   2023.2

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    DOI: https://doi.org/10.1016/j.apradiso.2023.110720

  • Visualization of dose distribution and basic study of dose estimation using plastic scintillator and digital camera

    Yoshitani, H; Fujibuchi, T; Anam, C

    BIOMEDICAL PHYSICS & ENGINEERING EXPRESS   8 ( 5 )   2022.9   ISSN:2057-1976

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    Radiation can be visualized using a scintillator and a digital camera. If the amount of light emitted by the scintillator increases with dose, the dose estimation can be obtained from the amount of light emitted. In this study, the basic performance of the scintillator and digital camera system was evaluated by measuring computed tomography dose index (CTDI). A circular plastic scintillator plate was sandwiched between polymethyl methacrylate (PMMA) phantoms, and x-rays were irradiated to them while rotating the x-ray tube to confirm changes in light emission. In addition, CTDI was estimated from the amount of light emitted by the scintillator during the helical scan and compared with the value measured from dosimeter. The scintillator emitted light while changing its distribution according to the movement of the x-ray tube. The measured CTDIvol was 33.20 mGy, the CTDIvol estimated from the scintillation light was approximately 46 mGy, which was 40% larger. In particular, when the scintillator was directly irradiated, the dose was overestimated compared with the value measured from the dosimeter. This overestimation can be because of the reproducibility of the position and the difference between the sensitivity of the scintillator to detect light emission and the sensitivity of the dosimeter, and the non-uniformity of position sensitivity due to the wide-angle lens.

    DOI: 10.1088/2057-1976/ac7c91

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  • Automated development of the contrast-detail curve based on statistical low-contrast detectability in CT images

    Anam, C; Naufal, A; Fujibuchi, T; Matsubara, K; Dougherty, G

    JOURNAL OF APPLIED CLINICAL MEDICAL PHYSICS   23 ( 9 )   e13719   2022.9   ISSN:1526-9914

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    Purpose: We have developed a software to automatically find the contrast–detail (C–D) curve based on the statistical low-contrast detectability (LCD) in images of computed tomography (CT) phantoms at multiple cell sizes and to generate minimum detectable contrast (MDC) characteristics. Methods: A simple graphical user interface was developed to set the initial parameters needed to create multiple grid region of interest of various cell sizes with a 2-pixel increment. For each cell in the grid, the average CT number was calculated to obtain the standard deviation (SD). Detectability was then calculated by multiplying the SD of the mean CT numbers by 3.29. This process was automatically repeated as many times as the cell size was set at initialization. Based on the obtained LCD, the C–D curve was obtained and the target size at an MDC of 0.6% (i.e., 6-HU difference) was determined. We subsequently investigated the consistency of the target sizes for a 0.6% MDC at four locations within the homogeneous image. We applied the software to images with six noise levels, images of two modules of the American College of Radiology CT phantom, images of four different phantoms, and images of four different CT scanners. We compared the target sizes at a 0.6% MDC based on the statistical LCD and the results from a human observer. Results: The developed system was able to measure C–D curves from different phantoms and scanners. We found that the C–D curves follow a power-law fit. We found that higher noise levels resulted in a higher MDC for a target of the same size. The low-contrast module image had a slightly higher MDC than the distance module image. The minimum size of an object detected by visual observation was slightly larger than the size using statistical LCD. Conclusions: The statistical LCD measurement method can generate a C–D curve automatically, quickly, and objectively.

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  • Dose estimation for cone-beam computed tomography in image-guided radiation therapy using mesh-type reference computational phantoms and assuming head and neck cancer

    Cumur, C; Fujibuchi, T; Hamada, K

    JOURNAL OF RADIOLOGICAL PROTECTION   42 ( 2 )   2022.6   ISSN:0952-4746 eISSN:1361-6498

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    This study aimed to estimate the additional dose the cone-beam computed tomography (CBCT) system integrated into the Varian TrueBeam linear accelerator delivers to a patient with head and neck cancer using mesh-type International Commission on Radiological Protection reference computational phantoms. In the first part, for use as a benchmark for the accuracy of the Monte Carlo geometry of CBCT, Particle and Heavy Ion Transport code System (PHITS) calculations were confirmed against measured lateral and depth dose profiles using a computed tomography dose profiler. After obtaining good agreement, organ dose calculations were performed by PHITS using mesh-type reference computational phantom (MRCP) and irradiating the neck region; the effective dose was calculated utilising absorbed organ doses and tissue weighting factors for male and female MRCP. Substantially, it has been found that the effective doses for male and female MRCP are 0.81 and 1.06 mSv, respectively. As this study aimed to assess the imaging dose from the CBCT system used in image-guided radiation therapy, it is required to take into account this dose in terms of both the target organ and surrounding tissues. Although the absorbed organ dose values and effective dose values obtained for both MRCP males and females were small, attention should be paid to the additional dose resulting from CBCT. This study can create awareness on the importance of doses arising from imaging techniques, especially CBCT.

    DOI: 10.1088/1361-6498/ac7914

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  • Dose estimation for cone-beam computed tomography in image-guided radiation therapy using mesh-type reference computational phantoms and assuming head and neck cancer Reviewed International journal

    Ceyda Cumur, Toshioh Fujibuchi, Keisuke Hamada

    Journal of Radiological Protection   2022.6

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  • Visualization of dose distribution and basic study of dose estimation using plastic scintillator and digital camera Reviewed International journal

    Hiroshi Yoshitani, ToshiohFujibuchi, Choirul Anam

    Biomedical Physics & Engineering Express   2022.6

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  • Automated development of the contrast-detail curve based on statistical low-contrast detectability in CT images Invited Reviewed International journal

    Choirul Anam, Ariij Naufal, Toshioh Fujibuchi, Kosuke Matsubara, Geoff Dougherty

    Journal of Applied Clinical Medical Physics   2022.6

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  • Development and evaluation of the effectiveness of educational material for radiological protection that uses augmented reality and virtual reality to visualise the behaviour of scattered radiation

    Nishi, K; Fujibuchi, T; Yoshinaga, T

    JOURNAL OF RADIOLOGICAL PROTECTION   42 ( 1 )   2022.3   ISSN:0952-4746 eISSN:1361-6498

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    Understanding the behaviour of scattered radiation is important for learning appropriate radiation protection methods, but many existing visualisation systems for radiation require special devices, making it difficult to use them in education. The purpose of this study was to develop teaching material for radiation protection that can help visualise the scattered radiation with augmented reality (AR) and virtual reality (VR) on a web browser, develop a method for using it in education and examine its effectiveness. The distribution of radiation during radiography was calculated using Monte Carlo simulation, and teaching material was created. The material was used in a class for department of radiological technology students and its influence on motivation was evaluated using a questionnaire based on the evaluation model for teaching materials. In addition, text mining was used to evaluate impressions objectively. Educational material was developed that can be used in AR and VR for studying the behaviour of scattered radiation. The results of the questionnaire showed that the average value of each item was more than four on a five-point scale, indicating that the teaching material attracted the interest of users. Through text mining, it could be concluded that there was improved understanding of, and confidence in, radiation protection.

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  • Development and evaluation of the effectiveness of educational material for radiological protection that uses augmented reality and virtual reality to visualize the behavior of scattered radiation Reviewed International journal

    Kazuki Nishi, Toshioh Fujibuchi, Takashi Yoshinaga

    Journal of Radiological Protection   42 ( 1 )   2022.1

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    DOI: 10.1088/1361-6498/ac3e0a.

  • 放射線診療における医療従事者の被ばく―正しい知識から安心と安全を見直す―

    藤淵 俊王

    保健の科学   64   2022

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  • 医療現場における職業被ばくの現状と課題

    藤淵 俊王

    新医療   568   86   2022

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  • Visualization of Scattered Radiation Distribution Using Virtual Reality Technology and Its Application to Radiation Protection Education

    Fujibuchi Toshioh

    Medical Imaging and Information Sciences   39 ( 2 )   19 - 23   2022   ISSN:09101543 eISSN:18804977

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    <p>In recent years, the term “digital transformation” has been used and is being applied in various fields. In the field of medical radiation protection, visualization of invisible radiation using virtual reality technology is thought to lead to a better understanding of radiation protection. We are developing educational materials that simulate and visualize the spread of radiation in various radiological examinations. Although a head-mounted display can be used to create a highly immersive environment for virtual reality, it is not suitable for teaching a large number of students at a time. The use of 3-D and 4-D scattering volume data for radiation protection education is a good way to provide radiation protection education to radiological technologists who do not have expert knowledge of radiation, and to provide them with the opportunity to learn about invisible radiation. It is expected to be effective in improving intuitive understanding of the spread and appropriate methods of care.</p>

    DOI: 10.11318/mii.39.19

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  • 「被ばく線量管理・放射線防護」に関するぜひ読むべき論文、興味深い示唆に富む論文

    藤淵 俊王

    RadFan   20   87 - 91   2022

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  • DXと放射線防護教育

    藤淵 俊王

    NLだより   534   1 - 1   2022

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  • 医療施設におけるさまざまな X 線撮影室条件での散乱線分布可視化と表示ツール開発 Reviewed

    清水翔太,荒川弘之,本田城二,徳森謙二,藤淵俊王

    保健物理   56 ( 4 )   315 - 323   2021.12

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  • Investigation of Eye Lens Dose Estimate based on AAPM Report 293 in Head Computed Tomography Reviewed International journal

    Choirul Anam, Winda Kusuma Dewi, Masdi Masdi, Freddy Haryanto, Toshioh Fujibuchi, Geoff Dougherty

    Journal of Biomedical Physics and Engineering   2021.9

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  • Radiation protection education using virtual reality by visualization of scatter distribution in radiological examination Reviewed International journal

    Toshioh Fujibuchi

    Journal of Radiological Protection   41 ( 4 )   S317   2021.7

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    DOI: 10.1088/1361-6498/ac16b1

  • Investigation of a method for creating neonatal chest phantom using 3D printer Reviewed International journal

    Toshioh Fujibuchi

    Journal of Physics: Conference Series   2021.7

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    DOI: 10.1088/1742-6596/1943/1/012056

  • Development of scattered radiation distribution visualization system using WebAR Reviewed International journal

    Kazuki Nishi, Toshioh Fujibuchi, Takashi Yoshinaga

    Journal of Physics: Conference Series   2021.7

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    DOI: 10.1088/1742-6596/1943/1/012057

  • Basic study on evaluation of X-ray dose distribution using plastic scintillator plate and digital CMOS camera Reviewed International journal

    Hiroshi Yoshitani, Toshioh Fujibuchi, Choirul Anam

    Journal of Physics: Conference Series   2021.7

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    DOI: 10.1088/1742-6596/1943/1/012058

  • Web-Based Collaborative VR Training System and Its Log Functionality for Radiation Therapy Device Operations Reviewed International journal

    Yuta Miyahara, Kosuke Kaneko, Toshioh Fujibuchi, Yoshihiro Okada

    CISIS 2021: Complex, Intelligent and Software Intensive Systems   734 - 746   2021.6

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    DOI: 10.1007/978-3-030-79725-6_74

  • Basic study of mobile gamma ray imaging using a digital camera and scintillator Reviewed International journal

    Hiroshi Yoshitani, Toshioh Fujibuchi, Yumiko Nakajima

    Biomedical Physics & Engineering Express   2021.3

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  • 放射線診療従事者の不均等被ばく管理の実態に基づく水晶体被ばく低減対策の提案 Reviewed

    藤淵 俊王, 藤田 克也, 五十嵐 隆元, 西丸 英治, 堀田 昇吾, 桜井 礼子, 小野 孝二

    日本放射線技術学会雑誌   77 ( 2 )   160 - 171   2021.2

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  • Development of an application to visualise the spread of scattered radiation in radiography using Augmented Reality Reviewed International journal

    Kazuki Nishi, Toshioh Fujibuchi, Takashi Yoshinaga

    Journal of Radiological Protection   11 ( 4 )   1299 - 1310   2020.11

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  • Noise reduction in CT images with a selective mean filter Reviewed International journal

    Choirul Anam, Kusworo Adi, Heri Sutanto, Zaenal Arifin, Wahyu Setia Budi, Toshioh Fujibuchi, Geoff Dougherty

    Journal of Biomedical Physics and Engineering   2020.8

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  • IntelligentBox Based Training System for Operation of Radiation Therapy Devices Reviewed International journal

    Yoshihiro Okada, Kosuke Kaneko, Toshioh Fujibuchi

    Complex, Intelligent and Software Intensive Systems - Proceedings of the 14th International Conference on Complex, Intelligent and Software Intensive Systems, CISIS   188 - 198   2020.7

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  • Comparison of central, peripheral, and weighted size-specific dose in CT Reviewed International journal

    Choirul Anam, Dwi Adhianto, Heri Sutanto, Kusworo Adi, Mohd Hanafi Ali, William Ian, Duncombe Rae, Toshioh Fujibuchi, Geoff Dougherty

    Journal of X-Ray Science and Technology   2020.5

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  • Examination of a dose evaluation method for floor-mounted kV X-ray image-guided radiation therapy systems Reviewed International journal

    Radiological Physics and Technology   2020.5

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  • The current status of the medical physicist certification program in Iran, in comparison with Turkey, China, Japan, UK, and USA Reviewed International journal

    Navid Khaledi, Toshioh Fujibuchi, Xufei Wang, Zhao Ruifeng, Nur Kodaloglu, Farhad Samiei

    Physical and Engineering Sciences in Medicine   2020.5

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  • Calculating the target exposure index using a deep convolutional neural network and a rule base Reviewed International journal

    Takeshi Takaki, Seiichi Murakami, Ryo Watanabe, Takatoshi Aoki, @Toshioh Fujibuchi

    Physica Medica   71   108 - 114   2020.2

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  • An artifact-free thyroid shield in CT examination: a phantom study Reviewed International journal

    Sutanto Heri, Irdawati Yulia, Anam Choirul, Hidayanto Eko, Arifin Zaenal, Fujibuchi Toshioh, Dougherty Geoff, Soedarsono Johni, Bahruddin Bahruddin

    Biomedical Physics & Engineering Express   2020.1

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  • ソーシャルビッグデータを活用した放射線被ばくに対する不安意見の解析システムの開発 Reviewed

    峰松優、藤淵俊王、有村秀孝

    保健物理   55 ( 1 )   2020.1

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  • Comparisons of Hounsfield unit linearity between images reconstructed using an adaptive iterative dose reduction (AIDR) and a filter back-projection (FBP) techniques Reviewed International journal

    I. Suyudi, C. Anam, H. Sutanto, P. Triadyaksa, T. Fujibuchi

    The Journal of Biomedical Physics and Engineering   2019.12

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  • 仮想現実を利用した放射線検査における散乱線分布の四次元可視化による放射線防護教育への活用法の検討 Reviewed

    藤淵俊王、上田昴樹、門柳紗姫 上野大輝、中村千裕

    日本放射線技術学会雑誌   75 ( 11 )   1297 - 1307   2019.11

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  • Angular dependence of shielding effect of radiation protective eyewear for radiation protection of crystalline lens Reviewed International journal

    #Yuma Hirata, Toshioh Fujibuchi, @Katsuya Fujita, @Takayuki Igarashi, @Eiji Nishimar, @Shogo Horita, @Reiko Sakurai, @Koji Ono

    Radiological Physics and Technology   2019.10

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    DOI: 10.1007/Fs12194-019-00538-2

  • Automated MTF measurement in CT images with a simple wire phantom Reviewed International journal

    @Choirul Anam, Toshioh Fujibuchi, @Freddy Haryanto, @Wahyu Setia Budi, @Heri Sutanto, @Kusworo Adi, @Zaenul Muhlisin and @Geoff Dougherty

    Polish Journal of Medical Physics and Engineering   25 ( 3 )   179 - 187   2019.8

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    DOI: 10.2478/pjmpe-2019-0024

  • An Improved Method of Automated Noise Measurement in CT Images Reviewed International journal

    C. Anam, I. Arif, F. Haryanto, F. P. Lestari, R. Widita, W. S. Budi, H. Sutanto, K. Adi,T. Fujibuchi, G. Dougherty

    Journal of Biomedical Physics and Engineering   2019.7

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  • Development of a novel artifact-free eye shield based on silicon rubber-lead composition in the CT examination of the head Reviewed International journal

    Yulia Irdawati, Heri Sutanto, Choirul Anam, @Toshioh Fujibuchi, Fatimatuz Zahroh, Geoff Dougherty

    Journal of Radiological Protection   2019.6

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  • A novel multiple-windows blending of CT images in red-green-blue (RGB) color space Reviewed International journal

    C. Anam, W.S Budi, F. Haryanto, T. Fujibuchi, G. Dougherty

    Scientific Visualization   2019.6

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  • An investigation of a CT noise reduction using a modified of wiener filtering-edge detection Reviewed International journal

    Choirul Anam, @Toshioh Fujibuchi, Takatoshi Toyoda, Naoki Sato, Freddy Haryanto, I Arif, Geoff Dougherty

    Journal of Physics: Conference Series   ( 1217 )   1 - 8   2019.6

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  • Assessment of patient dose and noise level of clinical CT images: Automated measurements Reviewed International journal

    Choirul Anam, Wahyu Setia Budi, Kusworo Adi, Heri Sutanto, Freddy Haryanto, Mohd Ali, @Toshioh Fujibuchi, Geoff Dougherty

    Journal of Radiation Protection   2019.5

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  • The clinical significance of modifying X-ray tube current-time product based on prior image deviation index for digital radiography Reviewed International journal

    Takeshi Takaki, Toshioh Fujibuchi, Seiichi Murakami, Takatoshi Aoki, Masafumi Ohki

    Physica Medica   63   35 - 40   2019.5

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  • An evaluation of computed tomography dose index measurements using a pencil ionization chamber and small detectors Reviewed International journal

    Choirul Anam, @Toshioh Fujibuchi, Freddy Haryanto, RenaWidita, Idan Arif, Geoff Dougherty

    Journal of Radiation Protection   39 ( 1 )   112 - 124   2019.1

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  • Automated MTF measurements in CT using the edges of a non-homogeneous module of the TOS-phantom Reviewed International journal

    Choirul Anam, Wahyu Setia Budi, @Toshioh Fujibuchi, Freddy Haryanto, Geoff Dougherty

    Journal of Physics: Conference Series   2019.1

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  • Estimation of the characteristics of gamma-ray dose measurements with an experimental wireless dose monitoring system Reviewed International journal

    @Toshioh Fujibuchi, Yuta Nozaki, Yang Ishigaki and Yoshinori Matsumoto

    Progress in Nuclear Science and Technology   6   77 - 80   2019.1

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  • Development of a wireless multisensor active personal dosimeter-tablet system Reviewed International journal

    @Toshioh Fujibuchi, #Airi Inoue, Yang Ishigaki and Yoshinori Matsumoto

    Progress in Nuclear Science and Technology   6   73 - 76   2019.1

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  • An algorithm for automated modulation transfer function measurement using an edge of a PMMA phantom: Impact of field of view on spatial resolution of CT images Reviewed International journal

    Choirul Anam, @Toshioh Fujibuchi, Wahyu Setia Budi, Freddy Haryanto, Geoff Dougherty

    Journal of applied Clinical Medical Physics   19 ( 6 )   244 - 252   2018.10

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  • Measurement of basic characteristics of scintillation-type radiation survey meters with multi-pixel photon counter Reviewed International journal

    @Toshioh Fujibuchi, #Takatoshi Toyoda, #Kento Terasaki

    Applied Radiation and Isotopes   140   12 - 17   2018.6

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  • Web-Based VR System for Operation Training of Medical Therapy Devices Reviewed International journal

    #Kotaro Kuroda, @Kosuke Kaneko, @Toshioh Fujibuchi, @Yoshihiro Okada

    Conference on Complex, Intelligent, and Software Intensive Systems   948 - 957   2018.6

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  • X線CT撮影の介助時における医療従事者被ばくの効果的な防護方法について Reviewed

    宮島隆一, @藤淵 俊王, 宮地優介, 立石哲士, 宇野善徳, 天川一利, 大浦弘樹, 折田信一

    日本放射線技術学会雑誌   74 ( 4 )   326 - 334   2018.4

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  • 放射線防護教育を目的としたX線撮影室における散乱線の可視化 Reviewed

    荒川 弘之, 徳森 謙二, 亀澤 秀美, 藤淵 俊王

    67 ( 1 )   11 - 15   2018.1

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    DOI: 10.3769/radioisotopes.67.11

  • A simple method for calibrating pixel values of the CT localizer radiograph for calculating water-equivalent diameter ana size-specific dose estimate Reviewed International journal

    Choirul Anam, Toshioh Fujibuchi, Takatoshi Toyoda, Naoki Sato, Freddy Haryanto, Rena Widita, Idam Arif, Geoff Dougherty

    Radiation Protection Dosimetry   2017.11

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  • Scatter index measurement using a CT dose profiler Reviewed International journal

    @Choirul Anam, @Freddy Haryanto, @Rena Widita, @Idam Arif, #Toshioh Fujibuchi, #Takatoshi Toyoda, @Geoff Dougherty

    Journal of Medical Physics and Biophysics,   4 ( 1 )   95 - 102   2017.8

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  • Evaluation of the distribution of activation inside a compact medical cyclotron Reviewed International journal

    Toshioh Fujibuchi, Takatoshi Toyoda, Shingo Baba, Yoshiyuki Umezu, Isao Komiya, Masayuki Sasaki, Hiroshi Honda

    Applied Radiation and Isotopes   124   27 - 31   2017.6

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  • Consideration of the Protection Curtain Shielding Ability after Identifying the Source of Scattered Radiation in the Angiography Reviewed International journal

    Naoki Sato, Fujibuchi Toshioh, Takatoshi Toyoda, Takato Ishida, Hiroki Ohura, Ryuichi Miyajima, Shinichi Orita, Tomonari Sueyoshi

    Radiation Protection Dosimetry   175 ( 2 )   238 - 245   2017.6

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    DOI: 10.1093/rpd/ncw291

    Other Link: https://academic.oup.com/rpd/article/175/2/238/2558990

  • A new shielding calculation method for X-ray computed tomography regarding scattered radiation Reviewed International journal

    Hiroshi Watanabe, Kimiya Noto, Tomokazu Shohji, Yasuyoshi Ogawa, Fujibuchi Toshioh, Ichiro Yamaguchi, Hitoshi Hiraki, Tetsuo Kida, Kazutoshi Sasanuma, Yasushi Katsunuma, Takurou Nakano, Genki Horitsugi, Makoto Hosono

    Radiological Phiysics and Technology   2016.12

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  • Evaluation of basic characteristics of a semiconductor detector for personal radiation dose monitoring Reviewed International journal

    Kento Terasaki, Fujibuchi Toshioh, Hiroo Murazaki, Taku Kuramoto, Yoshiyuki Umezu, Yang Ishigaki, Yoshinori Matsumoto

    Radiological Physics and Technology   2016.10

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  • 非自己遮蔽型サイクロトロン設置施設における法改正に基づく放射化物の除染の試み Reviewed

    小宮 勲, 梅津 芳幸, 藤淵 俊王, 中村 和正, 馬場 眞吾, 本田 浩

    日本放射線技術学会雑誌   72 ( 10 )   989 - 998   2016.10

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  • Estimation of ambient dose equivalent distribution in the 18F-FDG administration room using Monte Carlo simulation Reviewed International journal

    Shuji Nagamine, Fujibuchi Toshioh, Yoshiyuki Umezu, Kazuhiko Himuro, Shinichi Awamoto, Yuji Tsutsui, Yasuhiko Nakamura

    Radiological Physics and Technology   2016.8

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  • An evaluation of the basic characteristics of a plastic scitilating fibre detector in CT radiation fields Reviewed International journal

    Terasaki Kento, Fujibuchi Toshioh, Toyoda Takatoshi, Yoshida Yutaka, Akasaka Tsutomu, Nohtomi Akihiro, Morishita Junji

    Radiation Protection Dosimetry   2015.10

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  • 医療従事者被ばく管理のためのエネルギー補償型ワイヤレス線量モニタリングシステムの試作と評価 Reviewed

    藤淵 俊王, 村﨑 裕生, 倉本 卓, 梅津 芳幸, 石垣 陽

    日本放射線技術学会雑誌   71 ( 8 )   691 - 696   2015.8

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  • Measurement of the secondary neutron dose distribution from the LET spectrum of recoils using the CR-39 plastic nuclear track detector in 10 MV X-ray medical radiation fields Reviewed International journal

    Nuclear Instruments and Methods in Physics Research B   349   239 - 245   2015.3

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  • Assessing the effectiveness of risk communication for maintenance workers who deal with induced radioactivity management of medical linear accelerators Reviewed International journal

    Watanabe H, Maehara Y, Fujibuchi T, Koizumi M, Yamaguchi I, Kida T, Ohyama M, Horitsugi G, Hiraki H, Tsukamoto A, Itami J

    Health Physics Journal   2015.3

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  • Applicability of self-activation of an NaI scintillator for measurement of photo-neutrons around a high-energy X-ray radiotherapy machine Reviewed International journal

    Wakabayashi G, Nohtomi A, Yahiro E, Fujibuchi T, Fukunaga J, Umezu Y, Nakamura K, Hosono M, Itoh T

    Radiological Physics and Technology   8 ( 1 )   125 - 134   2015.1

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  • Distribution of residual long-lived radioactivity in the inner concrete walls of a compact medical cyclotron vault room Reviewed International journal

    Fujibuchi T, Nohtomi A, Baba S, Sasaki M, Komiya I, Umedzu Y, Honda H

    Annals of Nuclear Medicine   29 ( 1 )   84 - 90   2015.1

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  • 精上皮腫に対する述語放射線治療時における睾丸シールドの有効性の検討 Reviewed

    松元佳嗣, 梅津芳幸, 藤淵俊王, 野口佳孝, 福永淳一, 木村知子, 平野奈緒美, 廣瀬貴章, 園田真二郎, 松本亮二

    日本放射線技術学会雑誌   70 ( 9 )   883 - 887   2014.9

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  • Measurement of Activity Distribution Using Photostimulable Phosphor Imaging Plates in Decommissioned 10 MV Medical Linear Accelerator Reviewed International journal

    Fujibuchi T, Yonai S, Yoshida M, Sakae T, Watanabe H, Abe Y, Itami J

    Operational Radiation Safety   107 ( Suppl 2 )   S158 - S162   2014.8

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  • Optimal radiation shielding for beta and bremsstrahlung radiation emitted by (89)Sr and (90)Y: validation by empirical approach and Monte Carlo simulations Reviewed International journal

    Murata T, Miwa K, Matsubayashi F, Wagatsuma K, Akimoto K, Fujibuchi T, Miyaji N, Takiguchi T, Sasaki M, Koizumi M

    Annals of Nuclear Medicine   28 ( 7 )   617 - 622   2014.7

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  • Estimation of neutron and gamma radiation doses inside the concrete shield wall for 10 and 15 MV medical linear accelerators Reviewed International journal

    Fujibuchi T, Obara S, Nakajima M, Kitamura N, Sato T

    Progress in Nuclear Science and Technology   4   280 - 284   2014.4

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  • Measurement of dose distribution during combined IVR procedure using the film method Reviewed International journal

    Isobe T, Fujibuchi T, Takada K, Mori S, Kato H, Kasahara T, Sato E, Sakae T

    Progress in Nuclear Science and Technology   4   816 - 819   2014.4

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  • Effectiveness of self-shielding type cyclotrons Reviewed International journal

    Masumoto K, Iiduka H, Kuga K, Fujibuchi T, Sasaki M, Fukumura T, Nakajima, Toyoda A

    Progress in Nuclear Science and Technology   4   223 - 227   2014.4

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  • チームワーク入門実習の学習成果 Reviewed

    加納 尚美, 富田 美加, 庄司 俊之, 浅川 育世, 飯塚 眞喜人, 伊藤 文香, 岩本 浩二, 梅津 百代, 大江 佳織, 川野 道宏, 川村 拓, 相良 順一, 塩原 直美, 関根 聡子, 千田 直人, 髙村 祐子, 土居岸 悠奈, 萩原 梢, 藤井 義大, 藤淵 俊王

    茨城県立医療大学紀要   19   33 - 44   2014.3

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  • 放射線治療装置保守担当者に対する放射化物に関するリスクコミュニケーションの効果 Reviewed

    渡邉 浩, 山口 一郎, 前原 善昭, 小泉 美都枝, 藤淵 俊王, 木田 哲生, 塚本 篤子, 堀次 元気, 平木 仁史, 木村 有美, 大山 正哉

    日本放射線技術学会雑誌   69 ( 12 )   1353 - 1362   2013.12

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  • Dose-response measurement in gel dosimeter using various imaging modalities Reviewed International journal

    Fujibuchi T, Kawamura H, Yamanashi K, Hiroki A, Yamashita S, Taguchi M, Sato Y, Mimura K, Ushiba H, Okihara T

    7TH INTERNATIONAL CONFERENCE ON 3D RADIATION DOSIMETRY (IC3DDOSE)   444   2013.4

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    DOI: 10.1088/1742-6596/444/1/012089

  • 医療由来放射性廃棄物の保管・処理およびリスクコミュニケーションの現状 Reviewed

    渡邉 浩, 山口 一郎, 木田 哲生, 平木 仁史, 藤淵 俊王, 前原 善昭, 塚本 篤子, 小泉 美都枝, 木村 有美, 堀次 元気

    日本放射線技術学会雑誌   69 ( 3 )   278 - 283   2013.3

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  • Radiologic assessment of a self-shield with boron-containing water for a compact medical cyclotron Reviewed International journal

    Horitsugi G, Fujibuchi T, Yamaguchi I, Eto A, Iwamoto Y, Hashimoto H, Hamada S, Obara S, Watanabe H, Hatazawa J

    Radiological Physics and Technology   5 ( 2 )   129 - 137   2012.12

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  • Comparison of neutron fluxes in an 18-MeV unshielded cyclotron room and a 16.5-MeV self-shielded cyclotron room Reviewed International journal

    Fujibuchi T, Horitsugi G, Yamaguchi I, Eto A, Iwamoto Y, Obara S, Iimori T, Masuda Y, Watanabe H, Hatazawa J

    Radiological Physics and Technology   5 ( 2 )   156 - 165   2012.12

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  • 放射線治療装置における三次元動画計測ソフトウェアを用いたガントリー幾何学的アイソセンタ検証法の考案 Reviewed

    梁野 伸貴, 藤淵 俊王

    日本放射線技術学会雑誌   68 ( 11 )   1499 - 1507   2012.11

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  • 核医学診療施設が排出するRI汚染物の減衰保管の実現による廃棄処分の費用削減効果の推定 Reviewed

    木田 哲生, 平木 仁史, 山口 一郎, 藤淵 俊王, 渡邉 浩

    日本放射線技術学会雑誌   68 ( 4 )   468 - 474   2012.4

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  • Induced radioactive nuclides of 10-MeV radiotherapy accelerator detected by using a portable HP-Ge survey Meter Reviewed International journal

    Fujibuchi T, Obara S, Yamaguchi I, Oyama M, Watanabe H, Sakae T, Katoh K

    Radiation Protection Dosimetry   148 ( 2 )   168 - 173   2012.2

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  • Quality assurance technique for absorbed dose distribution in external radiation therapy with non-physical wedges in consideration of the character of the imaging plate Reviewed

    Fujibuchi T, Kurokawa M, Fujisaki T, Sakae T

    Radioisotopes   60 ( 12 )   513 - 521   2011.12

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  • Radiation safety management of residual long-lived radioactivity distributed in an inner concrete wall of a medical cyclotron room Reviewed International journal

    Yamaguchi I, Kimura K, Fujibuchi T, Takahashi Y, Saito K, Otake H

    Radiation Protection Dosimetry   146   167 - 169   2011.4

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  • Effects of Secondary Neutron Beam Generated in Radiotherapy on Electronic Medical Devices Reviewed International journal

    Isobe T, Kumada H, Takada K, Hashimoto T, Hashii H, Shida K, Tatami K, Fujibuchi T, Hammura M, Sakurai H, Sakae T

    Progress in Nuclear Science and Technology   2   524 - 529   2011.4

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  • Estimate of Photonuclear Reaction in a Medical Linear Accelerator using a Water-equivalent Phantom Reviewed International journal

    Fujibuchi T, Obara S, Sato H, Nakajima M, Kitamura N, Sato T, Fujisaki T, Sakae T

    Progress in Nuclear Science and Technology   2   803 - 807   2011.4

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  • 放射線技術学OSCEでの模擬患者による接遇評価の試み Reviewed

    川村 拓, 阿部 慎司, 窪田 宜夫, 森 浩一, 阿武 泉, 藤崎 達也, 畠山 六郎, 門間 正彦, 佐藤 斉, 石森 佳幸, 鹿野 直人, 島雄 大介, 藤淵 俊王, 五反田 留見, 小原 哲, 小倉 正人, 置田 晶子, 田中 彩

    日本放射線技師教育学会論文誌   3 ( 1 )   2 - 7   2011.4

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  • イメージングプレートを用いたクルックス管からの漏洩線量分布測定 Reviewed

    藤淵 俊王, 井上 創, 小原 哲, 加藤 英幸, 小林 育夫, 細田 正洋

    日本放射線安全管理学会誌   10 ( 1 )   40 - 45   2011.4

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  • A method of neutron energy evaluation by using an imaging plate and cone-like acryl converters with a geometrical modulation concept Reviewed International journal

    Nohtomi A, Sugiura N, Itoh T, Wakabayashi G, Sakae T, Terunuma T, Yabuta K, Tamura M, Fujibuchi T, Takata T, Kume K

    Nuclear Instruments and Methods in Physics Research   633 ( 1 )   36 - 45   2011.4

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  • Feasibility study on using imaging plates to estimate thermal neutron fluence in neutron-gamma mixed fields Reviewed International journal

    Fujibuchi T, Tanabe Y, Sakae T, Terunuma T, Isobe T, Kawamura H, Yasuoka K, Matsumoto T, Harano H, Nishiyama J, Masuda A, Nohtomi A

    Radiation Protection Dosimetry   147 ( 3 )   394 - 400   2011.3

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  • Measurement of absorbed doses in organs of medical staff at 18F-FDG pet examination Reviewed International journal

    Fujibuchi T, Iimori T, Isobe T, Masuda Y, Uchida Y, Matsubayashi F, Sakae T

    Radiological Physics and Technology   3 ( 1 )   34 - 39   2010.6

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  • Nationwide survey on the operational status of electron accelerators for radiation therapy in Japan Reviewed International journal

    Yamaguchi I, Tanaka S, Fujibuchi T, Kida T, Nagaoka H, Watanabe H

    Radiological Physics and Technology   3 ( 1 )   98 - 103   2010.6

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  • Estimate of Organ Radiation Absorbed Doses in Clinical CT using the Radiation Treatment Planning System Reviewed International journal

    Fujibuchi T, Funabashi N, Hashimoto M, Kato H, Kurokawa M, Deloar H M, Kunieda E, Komuro I, Sakae T

    Radiation Protection Dosimetry   142   174 - 183   2010.6

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  • Evaluation of a real-time semiconductor dosimeter and measurement of finger dose in nuclear medicine departments Reviewed International journal

    Fujibuchi T, Iimori T, Masuda Y, Uchida Y, Isobe T, Sakae T

    Radiological Physics and Technology   3 ( 1 )   54 - 57   2010.6

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  • An alternative method of neutron–gamma mixed-field dosimetry by using paired ionization chambers Reviewed International journal

    614   159 - 161   2010.4

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  • Measurement of thermal neutron fluence distribution with use of 23Na radioactivation around a medical compact cyclotron Reviewed International journal

    Fujibuchi T, Yamaguchi I, Kasahara T, Iimori T, Masuda Y, Kimura K, Watanabe H, Isobe T, Sakae T

    Radiological Physics and Technology   2 ( 2 )   159 - 165   2009.12

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  • PET核種由来放射性廃棄物管理に関する全国調査 Reviewed

    長岡 宏明, 渡辺 浩, 山口 一郎, 藤淵 俊王, 木田 哲生, 田中 真司

    日本放射線技術学会雑誌   65 ( 12 )   1650 - 1657   2009.12

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  • 線量校正における水の温度及び密度の経時的変化の影響 Reviewed

    藤淵 俊王, 藤崎 達也, 鈴木 雄一, 小山 和也, 笹嶋 利紀

    医用標準線量   14 ( 2 )   31 - 35   2009.12

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  • Nationwide survey on the operational status of medical compact cyclotrons in Japan Reviewed International journal

    Fujibuchi T, Yamaguchi I, Watanabe H, Kimura K, Tanaka S, Kida T, Nagaoka H

    Radiological Physics and Technology   2 ( 2 )   126 - 132   2009.12

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  • 交差プロファイル法による胸部4D-MRIの構築 Reviewed

    桝田 喜正, 藤淵 俊王, 羽石 秀昭

    27 ( 2 )   112 - 122   2009.9

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  • 医療用短半減期核種の放射性廃棄物の適正な管理に向けての文献的考察 Reviewed

    木田 哲生, 渡辺 浩, 山口 一郎, 長岡 宏明, Fujibuchi T, 田中 真司, 早川 登志雄

    日本放射線技術学会雑誌   65 ( 5 )   631 - 637   2009.5

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  • Dose profile measurement using an imaging plate: Evaluation of filters using Monte Carlo simulation of 4 MV x-rays Reviewed International journal

    Hashimoto M, Tomita T, Sawada K, Fujibuchi T, Nishio T, Nakagawa K

    Review of Scientific Instruments   80 ( 4 )   101 - 107   2009.4

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  • X線診療施設の遮へい評価法に関する調査研究 Reviewed

    大場 久照, 藤淵 俊王, 三田 創吾, 堀越 亜希子, 岩永 哲雄, 池渕 秀治, 細野 眞

    日本放射線技術学会雑誌   65 ( 1 )   57 - 63   2009.1

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  • 最大加速電圧が10 MVの診療用高エネルギー放射線発生装置使用室内の熱中性子束計測 Reviewed

    山口 一郎, 木村 健一, 田中 真司, 渡辺 浩, 池田 昌隆, 藤淵 俊王

    日本放射線安全管理学会雑誌   7 ( 1 )   42 - 49   2008.4

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  • 医療用イメージングプレートと23Na放射化検出器を利用したオートラジオグラフィ法によるサイクロトロン室内での熱中性子束測定の基礎的検討 Reviewed

    笠原 哲治, 藤淵 俊王, 飯森 隆志, 桝田 喜正, 山口 一郎

    日本放射線安全管理学会雑誌   7 ( 1 )   50 - 55   2008.4

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  • Examination of Beam Profile Measurement Using an Imaging Plate by the Light Exposure Fading Method for Quality Assurance of External Radiation Therapy Reviewed

    Fujibuchi T, Funabashi N, Hashimoto M, Abe Y, Iimori T, Matsubayashi F, Sawada K, Kurokawa M, Isobe T, Kikawa T, Komuro I

    62 ( 12 )   1697 - 1706   2006.12

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  • 全身 PET/MRI融合画像のソフトウェア的作成の試みと臨床応用に関する検討 Reviewed

    内田 佳孝, 中野 喜正, 藤淵 俊王, 磯辺 智子, 風間 俊基, 伊藤 久夫

    臨床放射線   51 ( 12 )   1743 - 1750   2006.12

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    Language:Japanese   Publishing type:Research paper (scientific journal)  

  • リアルタイム直読式半導体線量計による入射表面線量測定 Reviewed

    藤淵 俊王, 加藤 英幸, 橋本 成世, 阿部 幸直, 木川 隆司

    日本放射線技術学会雑誌   62 ( 7 )   997 - 1004   2006.7

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    Language:Japanese   Publishing type:Research paper (scientific journal)  

  • 全身 PET/MRI融合画像に関する検討 ~partial body fusionの有用性~ Reviewed

    中野 喜正, 藤淵 俊王, 磯辺 智子, 内田 佳孝, 風間 俊基, 浜田 一男, 木川 隆司, 伊藤 久夫

    日本放射線技術学会雑誌   62 ( 6 )   822 - 831   2006.6

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  • 胸部X線撮影における放射線防護エプロンによる生殖腺防護効果 Reviewed

    橋本 成世, 加藤 英幸, 藤淵 俊王, 越智 茂博, 守田 文範

    日本放射線技術学会雑誌   60 ( 12 )   1704 - 1712   2004.12

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  • CT検査時における防護シートの遮蔽効果について Reviewed

    藤淵 俊王, 橋本 成世, 加藤 英幸, 越智 茂博, 梁川 範幸, 守田 文範

    日本放射線技術学会雑誌   60 ( 12 )   1730 - 1738   2004.12

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Books

  • 診療放射線技術選書 放射線治療技術学

    佐々木 智成, 藤淵 俊王, 渥美 和重( Role: Joint author)

    南山堂  2022.12 

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    Language:Japanese   Book type:Scholarly book

  • 診療放射線技術選書 核医学検査技術学 改訂4版

    藤淵 俊王( Role: Joint author)

    南山堂  2021.11 

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    Language:Japanese   Book type:General book, introductory book for general audience

  • 診療放射線技術選書 医用画像検査技術学 改訂4版

    藤淵 俊王( Role: Joint author)

    南山堂  2020.10 

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    Language:Japanese   Book type:General book, introductory book for general audience

  • 診療放射線技術選書 放射線・医療安全管理学

    藤淵 俊王( Role: Joint author)

    南山堂  2020.9 

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    Language:Japanese   Book type:General book, introductory book for general audience

  • 医療放射線防護学

    藤淵 俊王( Role: Joint author)

    国際文献社  2020.8 

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    Language:Japanese   Book type:General book, introductory book for general audience

  • 日常診療のための放射線被曝の知識

    齋藤 勉, 平田 秀紀, 藤淵 俊王( Role: Joint author)

    金原出版株式会社  2014.12 

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    Language:Japanese   Book type:General book, introductory book for general audience

  • 新しい外部照射放射線治療技術による事故被ばくの予防(ICRP Publication 112)

    藤淵 俊王( Role: Translator/Editor)

    日本アイソトープ協会 , 丸善出版  2013.8 

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    Language:Japanese   Book type:General book, introductory book for general audience

  • 放射線医療技術学叢書(31)図解放射線防護ミニマム基礎知識

    藤淵 俊王( Role: Joint author)

    日本放射線技術学会  2012.10 

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    Responsible for pages:第3章 放射線防護に関する世界・日本の考え方 第4項 放射線防護で扱う量, 第5項 線量限度, 第6項 日本における関係法令.Pp.56-76   Language:Japanese   Book type:General book, introductory book for general audience

  • 診療放射線技師 スリム・ベーシック 医療安全管理学

    藤淵 俊王( Role: Joint author)

    メジカルビュー社  2023.12 

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    Responsible for pages:2章 5 被ばく管理 65-72   Language:Japanese   Book type:Scholarly book

  • 医療領域の放射線管理マニュアル -Q&A・医療関係法令- (2023年版)

    長畑 智政、菊地 透、大野 和子、小林 剛、坂本 肇、作田 裕美、大高 祐聖、藤淵 俊王、山口 一郎( Role: Joint author)

    医療放射線防護連絡協議会  2023.9 

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  • 診療放射線技師 スリム・ベーシック 放射線医学概論

    藤淵 俊王( Role: Joint author)

    メジカルビュー社  2023.3 

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    Responsible for pages:9章 法令 158-171   Language:Japanese   Book type:Scholarly book

  • Web-Based Collaborative VR System Supporting VR Goggles for Radiation Therapy Setup Training

    Miyahara Y., Kaneko K., Fujibuchi T., Okada Y.

    Lecture Notes on Data Engineering and Communications Technologies  2023    ISSN:23674512

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    This paper proposes a new web-based collaborative VR system for the radiation therapy setup training that solved the following problems: in the authors’ previous system, the laser representation was not the same as the real one and the replay function was not enough. In addition, the system configuration was complicated because in the previous system, two sets of a goggle with a smartphone were used as output devices, and a game pad and a hand tracking device were used as input devices. Contrarily, the system configuration of the new version proposed in this paper has become simpler by only supporting VR goggles such as Meta Quest 2 with their hand tracking functionality. Medical students need to take the radiation therapy setup training before practicing such therapies. Because the radiation therapy devices are very expensive and dangerous, we need a training system without using the real devices. Evaluation by medical students proved that the new system proposed in this paper is useful for such the training.

    DOI: 10.1007/978-3-031-26281-4_41

    Scopus

  • 放射線治療技術学

    佐々木, 智成, 藤淵, 俊王, 渥美, 和重

    南山堂  2022.12    ISBN:9784525279615

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    Total pages:xviii, 417p   Language:Japanese  

    CiNii Books

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  • 診療画像技術学Ⅱa X線撮影技術学 第2版

    藤淵 俊王( Role: Joint author)

    医療科学社  2022.3 

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  • X線撮影技術学

    森, 浩一, 西尾, 誠示, 五反田, 留見, 石森, 佳幸, 奥村, 健一郎, 小倉, 敏裕, 加藤, 匡伸, 加藤, 稔, 亀山, 佳也, 倉石, 政彦, 桜井, 直美, 佐藤, 斉, 下瀬川, 正幸, 関根, 紀夫, 高坂, 倫江, 武島, 玲子, 中島, 修一, 藤崎, 達也, 藤淵, 俊王, 星野, 修平, 本間, 光彦, 望月, 安雄, 森薗, 立男, 桝田, 喜正

    医療科学社  2022.3    ISBN:9784860031350

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    Total pages:341p   Language:Japanese  

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  • 放射線治療技術学

    佐々木 智成, 藤淵 俊王, 渥美 和重

    南山堂  2022    ISBN:9784525279615

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    Language:Japanese  

    CiNii Books

  • X線撮影技術学

    森 浩一 , 西尾 誠示, 五反田 留見, 石森 佳幸, 奥村 健一郎, 小倉 敏裕, 加藤 匡伸, 加藤 稔, 亀山 佳也, 倉石 政彦, 桜井 直美, 佐藤 斉, 下瀬川 正幸 , 関根 紀夫, 高坂 倫江, 武島 玲子, 中島 修一, 藤崎 達也, 藤淵 俊王, 星野 修平, 本間 光彦, 望月 安雄, 森薗 立男, 桝田 喜正

    医療科学社  2022    ISBN:9784860031350

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    Language:Japanese  

    CiNii Books

  • 放射線施設廃止の確認手順と放射能測定マニュアル

    藤淵 俊王( Role: Edit)

    一般社団法人 日本放射線安全管理学会  2020.6 

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    Language:Japanese   Book type:General book, introductory book for general audience

  • 診療放射線技師 臨床実習テキスト、第2部第3章B放射線被ばく、第3部第6章超音波検査

    藤淵 俊王( Role: Edit)

    文光堂  2020.6 

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  • 図解 診療放射線技術実践ガイド 第4版 第4章 放射線管理 6 医療被ばくへの対応・患者からの医療被ばく相談への対応と例P969-971、7 医療従事者の職業被ばく972-975

    藤淵 俊王( Role: Edit)

    文光堂  2020.1 

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  • 医療関係者のための放射線安全利用マニュアル 放射線安全管理のプロが語る60章

    藤淵 俊王( Role: Edit)

    アドスリー  2019.9 

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    Language:Japanese   Book type:General book, introductory book for general audience

  • 診療画像技術学Ⅱa X線撮影技術学

    藤淵 俊王( Role: Joint author)

    医療科学社  2017.10 

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  • 患者さんと家族のための放射線治療Q&A

    藤淵 俊王( Role: Joint author)

    金原出版株式会社  2015.11 

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    Language:Japanese   Book type:General book, introductory book for general audience

  • 診療放射線技術選書 核医学検査技術学 改訂3版

    佐々木 雅之, 藤淵 俊王, 山田 明史, 林 和孝, 大屋 信義, 赤松 剛, 桑原 康雄, 馬場 眞吾, 北村 宜之, 阿部 光一郎, 丸岡 保博, 磯田 拓郎( Role: Joint author)

    南山堂  2015.4 

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    Language:Japanese   Book type:General book, introductory book for general audience

  • 診療放射線技師 若葉マークのペーシェントケア

    藤淵 俊王( Role: Joint author)

    メジカルビュー  2011.7 

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    Responsible for pages:第12章放射線被ばく. Pp.104-113   Language:Japanese   Book type:Scholarly book

  • PET検査・診断 基礎のキソ

    藤淵 俊王( Role: Edit)

    金原出版  2008.10 

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    Responsible for pages:第6章 PET検査における被ばくPp.163-178   Language:Japanese   Book type:General book, introductory book for general audience

  • 若葉マークの画像解剖学

    藤淵 俊王( Role: Joint author)

    メジカルビュー  2007.3 

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    Responsible for pages:第2章 各画像の基礎知識,01 X線画像,第3章 画像解剖1 頭部 01 頭蓋骨の単純X線画像3 脊椎・脊髄 01脊椎の単純X線画像6 骨盤部 01骨盤部の単純X線画像8 四 肢 01四肢の単純X線画像. . Pp.6-9, Pp.40-57, Pp.146-163, Pp.371-377, Pp.418-447   Language:Japanese   Book type:Scholarly book

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Presentations

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MISC

  • 仮想現実技術による散乱線分布の可視化と放射線防護教育への活用

    藤淵 俊王

    医用画像情報学会雑誌 Vol.39,No.2, 19-23   2022.6

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    Language:Japanese   Publishing type:Article, review, commentary, editorial, etc. (scientific journal)  

    DOI: https://doi.org/10.11318/mii.39.19

  • 医療現場における職業被ばくの現状と課題

    藤淵 俊王

    新医療 No.568, 86-89   2022.4

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    Language:Japanese  

  • NCRP Statement No. 13「腹部・骨盤部単純 X 線撮影時の慣例的な生殖腺遮蔽の廃止に向けた NCRP 勧告」とその付属文書:経緯と最近の関連動向 Reviewed

    藤淵 俊王、松原 孝祐、浜田 信行

    保健物理 56(3):107-115   2021.10

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    Language:Japanese   Publishing type:Article, review, commentary, editorial, etc. (scientific journal)  

  • JHPS-KARP-ARPS joint program for commemoration of 2021 Bo Lindell Medal to discuss the future of radiation protection among young scientists and the award recipient, Dr. Ogino

    Toshioh Fujibuchi, Haruyuki Ogino, Han Ki Taek, Kotaro Tani, Daniel Emes

    Journal of Radiation Protection and Research 46(2):80-82   2021.7

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  • NCRP Statement No. 13「腹部・骨盤部単純X線撮影時の慣例的な生殖腺遮蔽の廃止に向けたNCRP 勧告」とその付属文書 Reviewed

    浜田 信行, 藤淵 俊王,石川 純也,伊藤 照生,恵谷 玲央,小野 孝二,西山 祐一,松原 孝祐

    保健物理 56(2)、80-93   2021.6

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    Language:English   Publishing type:Article, review, commentary, editorial, etc. (scientific journal)  

  • 仮想現実・拡張現実技術を活用した放射線診療従事者向け放射線防護教材の開発

    @藤淵 俊王

    FBNews,520,12-16   2020.4

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    Language:Japanese   Publishing type:Article, review, commentary, editorial, etc. (scientific journal)  

  • 放射線診療従事者の職業被ばくと防護対策

    @藤淵 俊王

    福岡医学雑誌 Vol.110 No.4   2019.12

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  • 医療分野における職業被ばくと放射線防護─放射線診療従事者の不均等被ばく管理

    @藤淵 俊王

    保健物理,53 (4),247-254   2018.12

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  • 日常診療のための放射線被曝入門(8)画像診断領域における医療被曝と患者の放射線防護

    藤淵 俊王, 平田 秀紀, 齋藤 勉

    臨床放射線 58(12): 1799–1809   2013.11

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    Language:Japanese   Publishing type:Article, review, commentary, editorial, etc. (scientific journal)  

  • リニアック装置における放射化物の管理

    藤淵 俊王

    放射線治療分科会誌 26(2): 11-12   2012.10

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    Language:Japanese   Publishing type:Article, review, commentary, editorial, etc. (scientific journal)  

  • 放射線防護のいろは:従事者の線量管理

    藤淵 俊王

    日本放射線技術学会雑誌 67: 63-68   2011.1

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  • 労災疾病臨床研究における医療機関を対象とした職業被ばく低減対策プログラムの開発

    藤淵 俊王

    2024.4

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    Language:Japanese   Publishing type:Article, review, commentary, editorial, etc. (scientific journal)  

  • IVRにおける放射線防護教育について

    藤淵 俊王

    九州循環器撮影研究会誌, No.34, 30-33   2024.3

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    Language:Japanese   Publishing type:Article, review, commentary, editorial, etc. (scientific journal)  

  • RI法改正に伴う放射線の量等の測定の信頼性の確保について

    藤淵 俊王

    線量校正ニュース, Vol.13, 6-9   2023.11

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  • JRC2023印象記

    藤淵 俊王

    医療放射線防護, No.89, 23-25   2023.10

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  • JSRT における AI 技術活用研究の動向と将来展望—取り組むべき課題と本学会に期待される役割とは !?—

    川下 郁生, 林 則夫, 富永 正英, 藤淵 俊王, 馬込 大貴, 谷川原 綾子, 奥田 光一, 篠原 範充

    日本放射線技術学会雑誌, 第79巻, 第8号, 838-850   2023.8

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    Language:Japanese  

    DOI: https://doi.org/10.6009/jjrt.2023-2241

  • 「保健物理」に掲載された東京電力福島第一原子力発電所事故関連記事を振り返る─被ばく医療・廃棄物─

    藤淵俊王,岩岡和輝,島田洋子,青天目州晶

    保健物理, 第58巻, 第2号, 73-75   2023.6

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    Language:Japanese  

    DOI: https://doi.org/10.5453/jhps.58.73

  • 第4回日本保健物理学会・日本放射線安全管理学会合同大会 日本保健物理学会第55回研究発表会

    藤淵俊王

    放影協ニュース、No113, 8-11   2023.4

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  • 放射線業務従事者に対する健康診断の期間別実態調査

    岡﨑龍史、立石清一郎、後藤元秀、渡部浩司、大野和子、藤淵俊王、吉村崇、百瀬琢麿、青木隆敏

    厚生労働省労災疾病臨床研究事業費補助金、令和4年度 総括・分担研究報告書   2023.4

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  • 「教育現場における低エネルギーX線を対象とした放射線安全管理に関する専門研究会」活動報告書

    秋吉 優史, 藤淵 俊王, 橋本 周, 松田 尚樹, 榎本 敦, 大谷 浩樹, 古田 琢哉, 伊藤 照生

    日本保健物理学会   2023.4

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  • 放射線防護教育へのICT活用事例の紹介

    藤淵 俊王

    2022.10

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  • 「被ばく線量管理・放射線防護」に関するぜひ読むべき論文、興味深い示唆に富む論文

    藤淵 俊王

    Rad Fan, 7月臨時増刊号 第20巻 第8号, 87-91   2022.6

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  • 放射線診療における医療従事者の被ばく―正しい知識から安⼼と安全を⾒直す―

    藤淵 俊王

    保健の科学   2022.6

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  • 仮想現実技術による散乱線分布の可視化と放射線防護教育への活用

    藤淵 俊王

    医用画像情報学会雑誌   39 ( 2 )   19 - 23   2022.6   ISSN:0910-1543

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    Language:Japanese   Publisher:医用画像情報学会  

    放射線の可視化により、現実世界では見ることのできない放射線を容易に認識し、理解できるようになった。3次元、4次元散乱光ボリュームデータを利活用した放射線防御教育は、放射線の広がりや適切な介助法、放射線防護法の理解につながる。放射線診療室の散乱光の可視化(仮想現実・拡張現実(AR)環境の構築、3次元的な広がりの可視化、CT検査と血管造影における散乱光分布の可視化、胸部臥位X線照射でのAR表示)、クロスリアリティーの医療放射線防御教育への活用について述べた。

  • 医療従事者が安心して健康に働くために(第6回) 放射線診療における医療従事者の被ばく 正しい知識から安心と安全を見直す

    藤淵 俊王

    保健の科学   64 ( 6 )   407 - 412   2022.6   ISSN:0018-3342

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  • DXと放射線防護教育

    藤淵 俊王

    NLだより   2022.4

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  • 職業被ばくの現況と技術のトレンド 医療現場における職業被ばくの現状と課題

    藤淵 俊王

    新医療   49 ( 4 )   86 - 89   2022.4   ISSN:0910-7991

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    Language:Japanese   Publisher:(株)エムイー振興協会  

    放射線診療の中で、X線透視を頻繁に実施する医師や看護師の被ばくが高い。業務量や労働環境によっては、令和3年4月に施行された新しい水晶体等価線量限度を超過してしまう可能性もあり、労働安全衛生の観点から線量限度の遵守はもちろん、可能な限り被ばくを低減するため、防護の最適化が求められる。放射線防護具や機器を駆使した被ばく低減対策、照射条件の最適化や適切な立ち位置の把握や理解といった放射線防護の推進が重要である。(著者抄録)

  • 医療における放射線についての近年の法改正の概要

    藤淵 俊王

    2021.10

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  • 医療機関における不均等被ばくの実態調査について

    藤淵 俊王

    FBNews No.535: 6-10   2021.7

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  • 放射能計測・評価の基礎

    藤淵 俊王

    核医学技術 41: 84-87   2021.1

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  • 医療法施行規則の改正は現場にどのようなインパクトを与えていますか? Reviewed

    山口 一郎、#藤淵 俊王

    2020.7

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  • Development of the System of Radiological Protection and Medical Exposure: Basic Information and Trends Reviewed

    Michiya Sasaki, @Toshioh Fujibuchi

    2020.4

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  • 医療スタッフの放射線安全に関わるガイドライン ~水晶体の被ばく管理を中心に~

    大野 和子、安陪 等思、坂本 肇、松本 一真、福士 政広、赤羽 正章、船曵 知弘、谷本 安、欅田 尚樹、 櫻井 孝、奥村 泰彦、原田 康雄、糸井 隆夫、 脇 研自、田尻 達郎、野坂 俊介、富田 博信、池田 隆徳、天野 英夫、伊藤 浩、尾崎 行男、伊藤 淳二、平泉 裕、松丸 祐司、太田 勝正、千田 浩一、藤淵 俊王、菊地 透、粟井 一夫、横山須美、関口 寛、 八木 信行、狩野 好延

    2020.4

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    Language:Japanese  

  • Development of the System of Radiological Protection and Medical Exposure: Basic Information and Trends Reviewed

    Michiya Sasaki, @Toshioh Fujibuchi

    2020.4

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  • 医療現場での放射線の安全利用

    @藤淵 俊王

    2020.1

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  • 放射線のリスクを学ぶ 保健師のためのテキスト

    @藤淵 俊王

    日本放射線技術学会 放射線防護部会誌,19 (1),33-34   2019.4

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  • Dispatch Report on the 11th Annual Scientific Meeting of Thai Medical Physicist Society (TMPS 2019)第11回タイ医学物理学会年次大会(TMPS 2019)派遣報告

    @藤淵 俊王

    日本放射線技術学会雑誌,75 (4),402-403   2019.4

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  • 水晶体被ばくの実態と防護

    @藤淵 俊王

    九州循環器撮影研究会,29,23-26   2019.3

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  • 医療分野における職業被ばくと放射線防護─放射線診療従事者の不均等被ばく管理

    @藤淵 俊王

    保健物理,53 (4),247-254   2018.12

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  • 医療分野における放射線防護のエッセンス ー医療放射線防護の考え方̶

    @藤淵 俊王

    保健物理,53 (3),135 (2018)   2018.10

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    Repository Public URL: https://hdl.handle.net/2324/7172559

  • 教育訓練の時間と内容に関する報告

    中島 覚, 角山 雄一, 桧垣 正吾, 矢永 誠人, 稲田 晋宣, 秋吉 優史, 鈴木 智和, 西 弘大, 藤淵 俊王

    日本放射線安全管理学会誌 17巻1号 p42-49   2018.5

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  • 放射線安全管理学(放射線双書)

    藤淵 俊王

    2017.12

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  • バーチャルリアリティ技術と角度情報センシング技術を統合した体感型放射線治療技術トレーニング手法の構築

    藤淵 俊王,金子 晃介

    医療の広場,57,19-22   2017.9

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  • 放射線診療従事者に対する不均等被ばく管理の現状と課題

    藤淵 俊王

    FBNews 484:6-11   2017.4

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  • 放射線治療用線量計に用いられる電位計のガイドライン

    清水森人, 河内徹, 木下尚紀, 坂間誠, 椎木健裕, 高橋豊, 藤淵俊王, 宮本直樹, 井原陽平, 谷口順, 岩下敦, 酒井孝志, 牛場洋明, 金井幸三, 山岡英樹, 谷謙甫, 佐方周防, 高瀬信宏, 神谷正已

    日本医学物理学学会   2017.4

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  • 放射線治療における2次中性子線の影響および放射化に関する研究

    藤淵 俊王

    放影協ニュース vol.91, 18-19   2017.4

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  • チームで行う放射線診療:診断参考レベルによる放射線検査の最適化への取り組み

    藤淵 俊王

    JCRニュース 208:10-12, 2015   2015.12

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  • 医療機関における放射化物の管理と課題

    藤淵 俊王

    日本放射線安全管理学会誌 Vol.14,No.2 69-70   2015.11

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  • モンテカルロシミュレーションの放射線技術への応用 9.モンテカルロシミュレーションの応用 (6)RI領域

    藤淵 俊王, 高橋 昭彦

    日本放射線技術学会雑誌 Vol.71,No.5 460-467   2015.5

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  • 平成26年度海外短期留学報告書

    藤淵 俊王

    日本放射線技術学会雑誌 Vol.71,No.3 279-283   2015.3

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  • 本棚 ICRP Publ.113 放射線診断および IVR における放射線防護教育と訓練

    藤淵 俊王

    2014.11

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  • 日常診療のための放射線被曝入門(11)放射線管理の法体系

    藤淵 俊王, 平田 秀紀, 齋籐 勉

    臨床放射線 Vol.59,No.2 356-366   2014.2

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  • 平成24年度学術調査研究班報告 放射線治療場で発生する二次中性子の簡易的評価システムの構築

    磯辺智範, 高田健太, 佐藤英介, 半村勝浩, 志田晃一, 松林史泰, 江川俊幸, 加藤英幸, 藤淵俊王, 笈田将皇, 千田浩一

    日本放射線技術学会雑誌 70巻2号 p163-164   2014.2

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  • 日常診療のための放射線被曝入門(9)放射線治療における影響

    平田 秀紀, 藤淵 俊王, 齋籐 勉

    臨床放射線 Vol.58 No.13, 1927-1937   2013.12

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  • 放射線治療装置における放射化物の管理に関する学会標準(ドラフト)の概要

    藤淵 俊王

    主任者ニュース 9(12).Pp.9-13, 日本アイソトープ協会   2012.12

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  • 13th International Congress of the International Radiation Protection Association (IRPA13)に参加して

    藤淵 俊王

    放影響ニュース 72.Pp.10-12, 放射線影響協会   2012.9

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  • 法改正に伴う放射線障害予防規程の改訂における留意点などについて 〜平成24年4月1日施行の改正放射線障害防止法等に関して〜

    堀次 元気, 藤淵 俊王, 山口 一郎, 木田 哲生, 田中 真司, 平木 仁史, 渡邉 浩, 大山 正哉, 岡崎 清, 杉本 勝也

    日本放射線技術学会雑誌 68(8): 1071-1075   2012.8

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  • 改正された放射線障害防止法での放射化物の管理のための換算表の考え方について

    桝本 和義, 延原 文祥, 藤淵 俊王, 米内 俊祐, 下吉 拓治

    日本放射線安全管理学会誌 11(1): 86-91   2012.4

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  • 治療用加速器の放射化問題への対応

    渡辺 浩, 藤淵 俊王, 山口 一郎

    日本放射線技術学会雑誌 67(5): 581-586   2011.5

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  • WC2009 参加報告

    藤淵 俊王

    医学物理 29: 121   2010.10

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  • クリアランス制度等の法整備の現状と放射線診療関係学会等団体の取り組みについて

    渡辺 浩, 山口 一郎, 藤淵 俊王, 大山 正哉, 木田 哲生, 長岡 宏明, 田中 真司, 土器屋 卓志, 高井 良尋, 齋藤 秀敏, 小高 喜久雄, 阿部 容久, 早川 登志雄, 岡崎 清, 浅見 文克, 木村 健一, 大場 久照, 平木 仁史, 星野 豊

    日本放射線技術学会雑誌 66:829-832   2010.7

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  • 2008年度後期国際研究集会派遣会員報告書

    藤淵 俊王

    日本放射線技術学会雑誌 65(12): 1700-1701   2009.12

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  • 医療用放射性廃棄物の課題とは何か?

    山口 一郎, 大山 正哉, 大場 久照, 加藤 英幸, 木田 哲生, 木村 健一, 田中 真司, 長岡 宏明, 早川 登志雄, 藤淵 俊王, 保科 正夫, 星野 豊, 宮浦 和徳, 渡辺 浩

    日本放射線技術学会雑誌 64(10): 1314-1320   2008.10

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  • コンピュータ支援診断(CAD)とは何か

    磯辺 智範, 三輪 建太, 藤淵 俊王, 本田 賢治, 五味 勉, 佐藤 英介, 飯森 隆志

    日本核医学技術学会 関東地方会誌 17(1): 13-18   2007.10

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  • 頭部領域

    磯辺 智範, 三輪 健太, 平野 雄二, 藤淵 俊王, 飯森 隆志, 新藤 雅司, 阿武 泉, 松村 明

    日本放射線技師会雑誌 54: 58-82   2007.8

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  • 平成18年度「医療放射線管理講習会」参加者印象記

    藤淵 俊王

    医療放射線防護NEWSLETTER 47: 83-84   2007.6

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  • 脊椎・脊髄領域

    磯辺 智範, 梁川 範幸, 平野 雄二, 藤淵 俊王, 尾崎 正則, 阿武 泉, 松村 明

    日本放射線技師会雑誌 53: 1599-1614   2006.7

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  • 胸部領域について

    藤淵 俊王, 佐藤 広崇, 梁川 範幸, 飯森 隆志, 中野 喜正, 磯辺 智範

    日本放射線技師会雑誌 53: 461-469   2006.5

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  • 誌上討論会 胸部X線撮影において防護プロテクタは必要か

    藤淵 俊王

    日本放射線技術学会雑誌   2004.12

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  • 文献紹介 -X線診断被ばくによる発がんのリスク:英国及び14カ国の推計

    藤淵 俊王

    日本放射線技術学会 放射線防護分科会誌   2004.12

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  • パネルディスカッション「病院における放射線と看護」印象記

    藤淵 俊王

    医療放射線防護NEWSLETTER   2004.6

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Industrial property rights

Patent   Number of applications: 1   Number of registrations: 0
Utility model   Number of applications: 0   Number of registrations: 0
Design   Number of applications: 0   Number of registrations: 0
Trademark   Number of applications: 0   Number of registrations: 0

Professional Memberships

  • 日本診療放射線技師会

  • 日本放射線技術学会

  • 日本医学物理学会

  • 医療放射線防護連絡協議会

  • 日本医学放射線学会

  • 日本核医学技術学会

  • 放射線安全フォーラム

  • 日本放射線安全管理学会

  • 日本応用物理学会

  • 日本保健物理学会

  • 日本放射線影響学会

  • 医療放射線防護連絡協議会

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  • 放射線安全フォーラム

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  • 日本診療放射線技師会

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  • 日本核医学技術学会

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  • 日本放射線技術学会

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  • 日本放射線安全管理学会

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  • 日本応用物理学会

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  • 日本医学物理学会

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  • 日本医学放射線学会

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  • 日本保健物理学会

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Committee Memberships

  • 日本保健物理学会   Journal of Radiation Protection and Research誌編集委員   Domestic

    2023.8 - 2025.6   

  • Executive   Domestic

    2023.4 - 2025.3   

  • 日本保健物理学会   第56回研究発表会 実行委員   Domestic

    2023.1 - 2023.12   

  • 日本保健物理学会   第55回研究発表会 大会長   Domestic

    2022.11   

  • Councilor   Domestic

    2022.9 - 2024.8   

  • 日本保健物理学会   医療被ばく国民線量評価委員会 委員   Domestic

    2022.6 - 2024.6   

  • 日本保健物理学会   連携協力WG   Foreign country

    2021.9 - 2023.9   

  • 大学等放射線施設連絡協議会   常議員   Domestic

    2021.8 - 2024.8   

  • 日本保健物理学会   コミュニケーション委員会 委員長   Domestic

    2021.7 - 2022.6   

  • 日本アイソトープ協会   医療従事者向け教育訓練検討WG   Domestic

    2021.6 - 2022.3   

  • 日本保健物理学会   「生殖腺防護に関するNCRP声明」翻訳ワーキンググループ 幹事   Domestic

    2021.3 - 2021.8   

  • 日本放射線技術学会   代議員   Domestic

    2020.7 - 2025.4   

  • 日本放射線技術学会   代議員  

    2020.7 - 2022.7   

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  • 日本保健物理学会   被ばく医療診療手引き編集委員会   Domestic

    2020.6 - 2022.3   

  • 日本放射線技術学会   英語論文誌 編集委員   Domestic

    2020.4 - 2025.4   

  • 日本放射線技術学会   第49回秋季学術大会実行委員会 委員   Domestic

    2020.4 - 2022.1   

  • 日本放射線技術学会   第49回秋季学術大会実行委員会 委員  

    2020.4 - 2022.1   

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  • 日本放射線技術学会   学術委員会 AI技術活用班 班員   Domestic

    2020.4 - 2021.4   

  • 日本保健物理学会   Journal of Radiation Protection and Research誌 編集委員   Foreign country

    2019.6 - 2021.6   

  • 「加速器施設の廃止措置に関わる放射化物の測定、評価方法の確立」研究検討委員   平成31年度放射線対策委託費「加速器施設の廃止措置に関わる放射化物の測定、評価方法の確立」研究検討委員   Domestic

    2019.6 - 2021.3   

  • WAZA-ARI研究開発・運用委員会   WAZA-ARI研究開発・運用委員会委員   Domestic

    2018.12 - 2020.3   

  • 日本放射線技術学会   英語論文誌編集委員   Domestic

    2018.4 - 2019.4   

  • 放射線影響懇話会   世話人代表   Domestic

    2017.6 - 2019.6   

  • Executive   Domestic

    2017.5 - 2021.5   

  • 大学等放射線施設協議会   「ラジオアイソトープの安全な利用マニュアル」ワーキンググループ   Domestic

    2017.4 - 2018.12   

  • 日本放射線安全管理学会   教育訓練の時間と内容に関するアドホック委員会   Domestic

    2017.4 - 2018.3   

  • 日本放射線安全管理学会   「放射線施設廃止の確認手順と放射能測定マニュアル」改訂専門委員会   Domestic

    2016.12 - 2020.6   

  • Executive   Domestic

    2016.6 - 2021.5   

  • 放射線安全フォーラム   企画委員会   Domestic

    2016.6 - 2020.5   

  • 日本医学物理学会   電位計ガイドラインWG   Domestic

    2016.6 - 2017.3   

  • Executive   Domestic

    2015.4 - 2021.3   

  • 日本放射線技術学会九州支部   九州支部理事   Domestic

    2015.4 - 2021.3   

  • 日本放射線技術学会   関係法令等委員会   Domestic

    2015.4 - 2017.3   

  • 日本放射線技術学会   放射線防護部会   Domestic

    2015.4 - 2017.3   

  • 日本保健物理学会   専門資格委員会委員   Domestic

    2014.6 - 2015.6   

  • 公益社団法人日本アイソトープ協会   放射線安全取扱部会広報専門委員会   Domestic

    2014.5 - 2018.3   

  • 放射線安全フォーラム   企画委員会   Domestic

    2012.4 - 2014.3   

  • 日本放射線技術学会   編集委員会   Domestic

    2011.4 - 2015.3   

  • 日本放射線技術学会   放射線防護分科会   Domestic

    2011.4 - 2015.3   

  • 日本放射線技術学会   関係法令等検討小委員会   Domestic

    2008.4 - 2014.3   

  • 日本放射線技術学会   放射線防護分科会   Domestic

    2005.4 - 2008.3   

▼display all

Academic Activities

  • 実行委員

    日本保健物理学会第56回研究発表会  ( 東京 ) 2023.11

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    Type:Competition, symposium, etc. 

  • 倫理委員

    第39回日本診療放射線技師学術大会  ( 熊本 ) 2023.9 - 2023.10

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    Type:Competition, symposium, etc. 

  • 交流集会 放射線診断の際の生殖腺の防護は必要か? 講師

    第12回日本放射線看護学会  ( 長崎 ) 2023.9

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    Type:Competition, symposium, etc. 

  • 厚生労働省労災疾病臨床研究の取り組み 講師

    第79回放射線防護研究会  ( 東京 ) 2023.6

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    Type:Competition, symposium, etc. 

  • Screening of academic papers

    Role(s): Peer review

    2023

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    Type:Peer review 

    Number of peer-reviewed articles in foreign language journals:14

    Number of peer-reviewed articles in Japanese journals:2

    Proceedings of International Conference Number of peer-reviewed papers:0

    Proceedings of domestic conference Number of peer-reviewed papers:0

  • JHPS企画セッション4医療被ばく国民線量評価委員会 患者線量管理システムにおけるIVR領域の臓器線量評価開発について   講師

    第4回日本保健物理学会・日本放射線安全管理学会合同大会  ( ハイブリッド(福岡、九州大学椎木講堂) ) 2022.11

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    Type:Competition, symposium, etc. 

  • JHPS企画セッション5中長期計画策定臨時委員会 (2) 保健物理に関する広報活動 (3) 保健物理に関する意見の表明   講師

    第4回日本保健物理学会・日本放射線安全管理学会合同大会  ( ハイブリッド(福岡、九州大学椎木講堂) ) 2022.11

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    Type:Competition, symposium, etc. 

  • 倫理委員

    第17回 九州放射線医療技術学術大会  ( 福岡 ) 2022.11

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    Type:Competition, symposium, etc. 

  • 医療放射線防護 医療被ばくおよび職業被ばくに関する最新動向 講師

    沖縄県放射線技師会 令和4年学術研究発表会  ( オンライン(沖縄) ) 2022.10

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    Type:Competition, symposium, etc. 

  • IVR での職業被ばくのシミュレーションと AR を用いた防護システム 講師

    日本放射線技術学会 九州支部 令和 4 年度第 1 回放射線防護・計測セミナー  ( オンライン(福岡) ) 2022.9

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    Type:Competition, symposium, etc. 

  • X線透視での線量評価 講師

    第11回医学物理講習会  ( 長崎 ) 2022.9

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    Type:Competition, symposium, etc. 

  • 医療分野(エックス線検査)での線量評価・遮蔽計算について 講師

    日本原子力学会 放射線遮蔽設計法に係るワークショップ第8回  ( 柏、オンライン ) 2022.8

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    Type:Competition, symposium, etc. 

  • 医療分野における職業被ばくと放射線防護, 講演 講師

    三重県産業保健研修会 第1回スキルアップ専門研修  ( 三重 ) 2022.7

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    Type:Competition, symposium, etc. 

  • 水晶体被ばくについて, 教育講演 講師

    第8回福岡県診療放射線技師会学術大会  ( 福岡 ) 2022.6

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    Type:Competition, symposium, etc. 

  • Screening of academic papers

    Role(s): Peer review

    2022

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    Type:Peer review 

    Number of peer-reviewed articles in foreign language journals:10

    Number of peer-reviewed articles in Japanese journals:2

    Proceedings of International Conference Number of peer-reviewed papers:0

    Proceedings of domestic conference Number of peer-reviewed papers:0

  • 診断参考レベルの概要と医療現場での活用のポイント 講師

    第 29回大分県放射線技術研究会  ( 大分 ) 2021.11

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    Type:Competition, symposium, etc. 

  • VRを利用した医療現場における外部放射線防護の原則理解 実習 講師

    令和3年度 放射性同位元素取扱施設安全管理担当教職員研修  ( 福岡(オンライン) ) 2021.11

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    Type:Competition, symposium, etc. 

  • 医療放射線防護の実態と課題 講師

    第58回 放射線影響懇話会  ( 大分(オンライン) ) 2021.11

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    Type:Competition, symposium, etc. 

  • 実行委員

    令和3年度 放射線安全取扱部会年次大会  ( 熊本 ) 2021.10

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    Type:Competition, symposium, etc. 

  • 実行委員長

    日本放射線技術学会 第49回秋季学術大会  ( 熊本 ) 2021.10

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    Type:Competition, symposium, etc. 

  • 特別講演Ⅱ 職業被ばくに関する法改正と防護方法の考え方 講師

    大分県放射線技師会 第31回学術大会  2021.10

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    Type:Competition, symposium, etc. 

  • Workshop Session of PHITS 、講師 International contribution

    ( オンライン ) 2021.9

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    Type:Competition, symposium, etc. 

  • リレーシンポジウム2 仮想現実技術を活用した放射線技術科学教育の実践、講師

    日本放射線看護学会 第10回学術集会  ( オンライン ) 2021.9

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    Type:Competition, symposium, etc. 

  • Radiological technology education utilizing virtual reality、講師 International contribution

    ( オンライン ) 2021.9

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    Type:Competition, symposium, etc. 

  • 第2部 腹部・骨盤部撮影時の生殖腺防護、座長

    日本保健物理 学会シンポジウム  変わりつつある医療放射線防護:マネージメントシステムと生殖腺防護  ( オンライン ) 2021.9

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    Type:Competition, symposium, etc. 

  • 医療放射線防護とDX、講師

    放射線安全フォーラム 令和3年度夏季オンライン懇談会  ( オンライン ) 2021.8

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    Type:Competition, symposium, etc. 

  • 眼の水晶体の放射線防護・管理方法の考え方、講師

    日本放射線技術学会 中部支部 2021年度 第1回 アンギオ研究会セミナー  ( オンライン ) 2021.7

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    Type:Competition, symposium, etc. 

  • 医療用放射線の安全管理に関する研修と有害事例等発生時の対応の概要、講師

    第77回 日本放射線技術学会総会学術大会 教育講演(放射線防護部会)  ( 横浜 ) 2021.4

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    Type:Competition, symposium, etc. 

  • DRLs2020について、講師

    福岡県診療放射線技師会 セーフティマネージメントセミナー  ( 福岡 ) 2021.2

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    Type:Competition, symposium, etc. 

  • Screening of academic papers

    Role(s): Peer review

    2021

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    Type:Peer review 

    Number of peer-reviewed articles in foreign language journals:14

    Number of peer-reviewed articles in Japanese journals:4

    Proceedings of International Conference Number of peer-reviewed papers:0

    Proceedings of domestic conference Number of peer-reviewed papers:0

  • DRLs2020について、講師

    令和2年度九州地域放射線技師研修会  ( 熊本 ) 2020.12

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    Type:Competition, symposium, etc. 

  • 放射能計測、評価の基礎、講師

    第40回日本核医学技術学会総会学術大会  ( 神戸 ) 2020.11

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    Type:Competition, symposium, etc. 

  • Radiation Protection Education for Medical Staff using Virtual Reality Technology, Keynote speaker International contribution

    10th International Seminar on New Paradigm and Innovation on Natural Sciences and its Application  ( Semarang (Online) Indonesia ) 2020.9

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    Type:Competition, symposium, etc. 

  • 被ばく医療診療手引き編集委員会委員

    国立研究開発法人 量子科学技術研究開発機構  2020.9 - 2022.8

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  • IGRTにおける被ばく線量をどう考えるか、講師

    第18回 九州放射線治療システム研究会  ( 福岡 ) 2020.1

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    Type:Competition, symposium, etc. 

  • Screening of academic papers

    Role(s): Peer review

    2020

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    Type:Peer review 

    Number of peer-reviewed articles in foreign language journals:18

    Number of peer-reviewed articles in Japanese journals:9

  • 放射線測定の基礎と実践、講師

    大分県放射線技師会 被ばく線量測定セミナー  ( 大分 ) 2019.12

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    Type:Competition, symposium, etc. 

  • 被ばく管理について、講師

    2019年度九州地域放射線技師研修会  ( 福岡 ) 2019.12

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    Type:Competition, symposium, etc. 

  • 医療放射線安全管理のための職員研修について、講師

    第 47 回 日本放射線技術 学会秋季学術大会  ( 大阪 ) 2019.10

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    Type:Competition, symposium, etc. 

  • Journal of Radiation Protection and Research International contribution

    2019.10 - 2025.3

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    Type:Academic society, research group, etc. 

  • Chairman on Parallel Session International contribution

    PIT-FMB 2019 (Pertemuan Ilmiah Tahunan Fisika Medis dan Biofisika)  ( Bali Indonesia ) 2019.8

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    Type:Competition, symposium, etc. 

  • Current status of medical exposure in CT examination and patient dose management, Invited speaker International contribution

    PIT-FMB 2019 (Pertemuan Ilmiah Tahunan Fisika Medis dan Biofisika)  ( Bali Indonesia ) 2019.8

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    Type:Competition, symposium, etc. 

  • 倫理審査委員

    第14回九州放射線医療技術学術大会  ( 熊本 ) 2019.7 - 2019.11

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    Type:Competition, symposium, etc. 

  • 座長

    第75回日本放射線技術学会総会学術大会  ( 横浜 ) 2019.4

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    Type:Competition, symposium, etc. 

  • Screening of academic papers

    Role(s): Peer review

    2019

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    Type:Peer review 

    Number of peer-reviewed articles in foreign language journals:5

    Number of peer-reviewed articles in Japanese journals:3

  • 放射線診療従事者の職業被ばくとその対策, 講師(Invited Plenary speaker)

    第13回九州医療放射線技術学術大会  ( 沖縄 ) 2018.11

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    Type:Competition, symposium, etc. 

  • 講師(Invited Plenary speaker) International contribution

    2018.8

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    Type:Competition, symposium, etc. 

  • 講師

    九州循環器撮影研究会 第72回研究会「水晶体被ばくの実態と防護」講師  ( 福岡 ) 2018.7

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    Type:Competition, symposium, etc. 

  • 座長

    日本保健物理学会第51回研究発表会 医療被ばくⅠ  ( 札幌 ) 2018.6

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    Type:Competition, symposium, etc. 

  • Radiological Physics and Technology International contribution

    2018.4 - 2025.3

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    Type:Academic society, research group, etc. 

  • シンポジスト

    平成29年度 筑波大学・茨城県立医療大学合同公開講座 求められる多職種連携の教育と実践 シンポジウム 課題解決型高度医療人材養成プログラムの進捗と今後の展望「実践能力強化型チーム医療加速プログラムの概要と成果」  ( 筑波 ) 2018.2

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    Type:Competition, symposium, etc. 

  • Screening of academic papers

    Role(s): Peer review

    2018

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    Type:Peer review 

    Number of peer-reviewed articles in foreign language journals:8

    Number of peer-reviewed articles in Japanese journals:2

    Proceedings of International Conference Number of peer-reviewed papers:1

  • 講師

    放射線安全安心ネットワーク 「シミュレーションによる線量分布を利用したサイクロトロン建屋廃止の事例紹介」  ( 福岡 ) 2017.12

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    Type:Competition, symposium, etc. 

  • 講師

    日本放射線技術学会 九州支部 平成29年度 放射線防護・計測セミナー水晶体の放射線防護の現状と対策「放射線診療従事者の水晶体被ばくの実態と対策」  ( 福岡 ) 2017.12

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    Type:Competition, symposium, etc. 

  • 講師

    日本放射線技術学会 平成29年度市民公開講座 身近な放射線!検査と治療の最前線からリスク評価まで 「医療における放射線被ばくとその管理」  ( 長崎 ) 2017.11

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    Type:Competition, symposium, etc. 

  • 講師

    原子力規制委員会 眼の水晶体の放射線防護検討部会 医療現場での水晶体被ばくの現状 ‐その他(一般撮影、CT、RI、放射線治療)など‐  ( 東京 ) 2017.10

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    Type:Competition, symposium, etc. 

  • 座長 International contribution

    2017.10

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    Type:Competition, symposium, etc. 

  • 講師

    第45回日本放射線技術学会秋季学術大会 放射線防護フォーラム 「今から考えておこう 従事者の水晶体被ばくについて ② 各種国内法令見直しの現状」  ( 広島 ) 2017.10

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    Type:Competition, symposium, etc. 

  • 講師

    第5回 医療被ばく線量評価実務セミナー(国立病院機構 九州ブロック)「医療被ばくのリスク評価の考え方と患者説明について」講師  ( 福岡 ) 2017.7

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    Type:Competition, symposium, etc. 

  • 講師

    日本保健物理学会第50回研究発表会 JHPS企画セッション 医療分野における放射線防護のためのシミュレーションの活用 「(4)放射線診療従事者と装置の管理への活用」  ( 大分 ) 2017.6

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    Type:Competition, symposium, etc. 

  • シンポジスト

    日本保健物理学会第50回研究発表会 シンポジウム 放射線防護人材育成への挑戦 「大学における診療放射線技師教育(1) 九州大学」  ( 大分 ) 2017.6

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    Type:Competition, symposium, etc. 

  • 座長

    日本保健物理学会第50回研究発表会 C2:医療被ばく  ( 大分 ) 2017.6

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    Type:Competition, symposium, etc. 

  • 講師

    日本放射線技術学会 第5回診断参考レベル活用セミナー 講義③ 、実習 「血管造影装置」  ( 熊本 ) 2017.6 - 2018.6

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    Type:Competition, symposium, etc. 

  • 座長

    日本放射線技術学会総会学術大会 放射線管理フォーラム  ( 横浜 ) 2017.4

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    Type:Competition, symposium, etc. 

  • 講師

    日本放射線技術学会 第73会総会学術大会 入門講座6「被ばくの種類と基準値の理解」  ( 横浜 ) 2017.4 - 2014.4

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    Type:Competition, symposium, etc. 

  • Screening of academic papers

    Role(s): Peer review

    2017

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    Type:Peer review 

    Number of peer-reviewed articles in foreign language journals:2

    Number of peer-reviewed articles in Japanese journals:2

  • 一般撮影での線量測定・評価方法、DRLの活用方法について、講師

    線量計測セミナー  ( 沖縄 ) 2016.3

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    Type:Competition, symposium, etc. 

  • 患者さんからの放射線被ばくに関する対応について、講師

    第2回 臨地実習指導者講習会  ( 福岡 ) 2016.1

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    Type:Competition, symposium, etc. 

  • 診断参考レベルに基づいた被ばく線量の管理、講師

    平成27年度 診療放射線技師研修  ( 福岡 ) 2016.1

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  • Screening of academic papers

    Role(s): Peer review

    2016

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    Type:Peer review 

    Proceedings of International Conference Number of peer-reviewed papers:1

  • 診断参考レベルに基づいた被ばく線量の管理、講師

    国立病院機構九州ブロック 副診療放射線技師長等管理研修  ( 福岡 ) 2015.12

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    Type:Competition, symposium, etc. 

  • 座長(Chairmanship)

    第10回九州放射線医療技術学術大会 被ばく・放射能測定  ( 宮崎 ) 2015.11

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    Type:Competition, symposium, etc. 

  • 診断参考レベルと線量の最適化、講師

    第45回九州大学放射線技師同門会  ( 福岡 ) 2015.10

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  • 司会(Moderator)

    第43回日本放射線技術学会秋季大会 入門講座「放射線防護で扱う単位と用語の活用法」  ( 金沢 ) 2015.10

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    Type:Competition, symposium, etc. 

  • 英語論文投稿の意義とポイント、講師

    九州大学病院放射線部門 学会発表英語化に向けた研修会  ( 福岡 ) 2015.9

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    Type:Competition, symposium, etc. 

  • ICRU reportの変遷とエラーについて、講師

    日本放射線腫瘍学会 第17回放射線腫瘍学夏季セミナー  ( 金沢 ) 2015.8

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    Type:Competition, symposium, etc. 

  • 座長(Chairmanship)

    第1回福岡県診療放射線技師会学術大会 シンポジウム 放射線被ばくにおける最適化と正しい知識  ( 福岡 ) 2015.6

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    Type:Competition, symposium, etc. 

  • 医療機関における放射化物の管理と課題、講師

    第12回日本放射線安全管理学会シンポジウム  ( 東京 ) 2015.6

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    Type:Competition, symposium, etc. 

  • 医療被ばく評価セミナー、講師

    国立病院機構九州ブロック 医療被ばく評価セミナー  ( 福岡 ) 2015.6

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    Type:Competition, symposium, etc. 

  • 第4回 医療被ばくのリスク評価の考え方と患者説明について、講師

    医療被ばくに関する勉強会  ( 福岡 ) 2015.5

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    Type:Competition, symposium, etc. 

  • 第3回 シミュレーションソフトを用いた線量評価について、講師

    医療被ばくに関する勉強会  ( 福岡 ) 2015.4

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    Type:Competition, symposium, etc. 

  • エックス線装置の遮蔽計算法改訂の概要と現場対応 「遮蔽計算法改訂の概要とポイント」、講師

    第71回日本放射線技術学会総会学術大会 放射線管理フォーラム  ( 横浜 ) 2015.4

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    Type:Competition, symposium, etc. 

  • 座長(Chairmanship)

    第71回日本放射線技術学会総会学術大会 放射線技術概論 管理、環境放射線  ( 横浜 ) 2015.4

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    Type:Competition, symposium, etc. 

  • 知っておきたい中性子の知識  -基礎から応用まで- 「医療機関における中性子に関する法令」、講師

    第71回日本放射線技術学会総会学術大会 放射線防護専門部会  ( 横浜 ) 2015.4

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    Type:Competition, symposium, etc. 

  • 第2回 診断領域の線量測定方法 (CT・血管造影)、講師

    医療被ばくに関する勉強会  ( 福岡 ) 2015.3

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    Type:Competition, symposium, etc. 

  • 第1回 診断領域の線量測定方法 (一般撮影・CT)、講師

    医療被ばくに関する勉強会  ( 福岡 ) 2015.2

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    Type:Competition, symposium, etc. 

  • 医療被ばくと他の被ばくの違いは?、講師

    平成26年度市民公開講座 放射線に対するリスクの正しい考え方  ( 大宮 ) 2015.2

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    Type:Competition, symposium, etc. 

  • 医療被ばくについて/放射線検査の正当化と最適化、講師

    第9回九州放射線医療技術学術大会 市民公開講座  ( 北九州 ) 2014.11 - 2014.2

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    Type:Competition, symposium, etc. 

  • Isotope News

    2014.5 - 2020.3

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    Type:Academic society, research group, etc. 

  • 座長(Chairmanship)

    第70回日本放射線技術学会総会学術大会 専門講座(患者への放射線説明 診療放射線技師の役割)  ( 横浜 ) 2014.4

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    Type:Competition, symposium, etc. 

  • 司会(Moderator)

    第70回日本放射線技術学会総会学術大会 放射線管理フォーラム( 新国際放射線基本安全基準(BSS)で示された医療放射線防護の考え方を現場の問題に適用してみよう)  ( 横浜 ) 2014.4

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    Type:Competition, symposium, etc. 

  • 改正放射線障害防止法と学会標準の概要、講師

    日本放射線治療専門放射線技師 認定機構統一講習会  ( 金沢 ) 2012.12

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    Type:Competition, symposium, etc. 

  • 教育講演 リニアック装置における放射化物の管理、講師

    日本放射線技術学会第40回秋季学術大会  ( 東京 ) 2012.10

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    Type:Competition, symposium, etc. 

  • 法令改正までの経緯と検討された内容、講師

    PETサマーセミナー2012  ( 松本 ) 2012.9

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    Type:Competition, symposium, etc. 

  • 放射線治療装置における放射化物の管理に関する学会標準、講師

    放射線治療装置における放射性汚染物(放射化物)の管理に関する学会標準講習会  ( 東京 ) 2012.6

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    Type:Competition, symposium, etc. 

  • 医療分野における対応と学会標準

    日本放射線安全管理学会 改正法令勉強会  ( 東京 ) 2012.5

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    Type:Competition, symposium, etc. 

  • 放射線障害防止法改正法令の概要、講師

    平成24年度第1回福島県放射線治療技術研究会  ( 郡山 ) 2012.5

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    Type:Competition, symposium, etc. 

  • 放射線発生装置の使用に伴う放射化の評価

    平成24年度 放射線(診療)業務従事者の教育訓練 講習会  ( 鶴見 ) 2012.4

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    Type:Competition, symposium, etc. 

  • 放射化物規制の本格的施行における学会標準の概要と現場対応 リニアックの場合、講師

    第68回日本放射線技術学会 総会学術大会 放射線管理フォーラム  ( 横浜 ) 2012.4

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    Type:Competition, symposium, etc. 

  • 医療分野における放射線管理とこれからの課題、講師

    放射線安全フォーラム 第24回放射線防護研究会  ( 東京 ) 2012.4

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    Type:Competition, symposium, etc. 

  • クリアランス制度導入に伴う改正放射線障害防止法施行(H24.4.1)の概要、講師

    放射線治療用直線加速装置の利用に伴う放射化物の管理と処分の学会標準(案)講習会  ( 東京 ) 2012.2

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    Type:Competition, symposium, etc. 

  • 医療分野における職業被ばくについて、講師

    平成23年度第2回医学物理インテンシブ生涯教育コース  ( 茨城 ) 2011.12

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    Type:Competition, symposium, etc. 

  • 改正放射線障害防止法施行前の医療現場の準備(放射化物に関する本格的規制整備に備えて)、講師

    神奈川県放射線管理士部会放射線障害防止法に基づく放射線管理実務講習会  ( 横浜 ) 2011.11

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    Type:Competition, symposium, etc. 

  • 教育講演 治療用加速器の放射化問題への対応、講師

    第38回日本放射線技術学会秋季大会  ( 仙台 ) 2010.10

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    Type:Competition, symposium, etc. 

  • 英文投稿への第一歩 -RPT誌のメリット-、講師

    第38回日本放射線技術学会秋季大会  ( 仙台 ) 2010.10

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    Type:Competition, symposium, etc. 

  • 医療用サイクロトロン施設の放射化評価、講師

    平成22年度放射線診療業務従事者の教育訓練(講習会)  ( 横浜 ) 2010.4

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    Type:Competition, symposium, etc. 

  • 土井賞受賞講演、講師

    日本放射線技術学会第65回総会学術大会  ( 横浜 ) 2010.4

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    Type:Competition, symposium, etc. 

  • 医療従事者の被ばく管理と低減対策、講師

    日本放射線技術学会 第65回総会学術大会  ( 横浜 ) 2010.4

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    Type:Competition, symposium, etc. 

  • 放射線防護のいろは ―従事者の線量管理、講演

    日本放射線技術学会第65回総会学術大会  ( 横浜 ) 2009.4

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    Type:Competition, symposium, etc. 

  • 各モダリティにおける正しい線量測定方法 一般撮影の線量評価法、講演

    第22回全国循環器撮影研究会  ( 横浜 ) 2008.4

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    Type:Competition, symposium, etc. 

  • 放射化を考慮したサイクロトロン施設の設計と運用方法、講演

    平成20年度 神奈川県放射線管理士部会 放射線診療業務従事者の教育訓練(講習会)  ( 神奈川 ) 2008.4

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    Type:Competition, symposium, etc. 

  • パネルディスカッション 手指の被ばくを考える -Non Vascular(非血管系)IVRでは- パネリスト

    日本放射線技術学会 第25回放射線防護分科会  ( 名古屋 ) 2007.10

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    Type:Competition, symposium, etc. 

▼display all

Research Projects

  • 医療機関における放射線被ばく防護教育等に関する包括的研究

    2024.4 - 2027.3

    厚生労働省 労災疾病臨床研究事業(日本) 

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    Authorship:Coinvestigator(s) 

  • 医療機関における放射線被ばく防護教育等に関する包括的研究

    2024 - 2026

    科学研究費助成事業  厚生労働省 労災疾病臨床研究補助金事業

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    Authorship:Coinvestigator(s)  Grant type:Competitive funding other than Grants-in-Aid for Scientific Research

  • 医療機関における放射線被ばく防護教育等に関する包括的研究 (代表:千田 浩一(東北大学))

    2024 - 2026

    厚生労働省 労災疾病臨床研究事業費

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    Authorship:Coinvestigator(s)  Grant type:Contract research

  • 放射線診療における散乱線分布画像の表示

    2023.10 - 2023.12

    受託研究

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    Authorship:Principal investigator  Grant type:Other funds from industry-academia collaboration

  • Data collection and dosimetry methods for sustainable medical exposure national dosimetry

    Grant number:23K28230  2023.4 - 2027.3

    Grants-in-Aid for Scientific Research  Grant-in-Aid for Scientific Research (B)

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    Grant type:Scientific research funding

    CiNii Research

  • 医療用X線の高精度遮蔽評価と防護技術

    2023.4 - 2024.3

    共同研究

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    Authorship:Principal investigator  Grant type:Other funds from industry-academia collaboration

  • 放射線業務従事者に対する健康診断の機関別実態調査

    2022.6 - 2023.3

    厚生労働省 労災疾病臨床研究事業(日本) 

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    Authorship:Coinvestigator(s) 

  • デジタルトランスフォーメーションを活用した医療従事者の被ばく低減プログラムの開発と有効性の検証

    2022.4 - 2025.3

    厚生労働省 労災疾病臨床研究事業(日本) 

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    Authorship:Principal investigator 

  • 実習科目向けXR型電子教材の開発基盤システムとデータ駆動型教育手法の研究開発

    Grant number:23K24960  2022.4 - 2025.3

    科学研究費助成事業  基盤研究(B)

    岡田 義広, 築山 能大, 藤淵 俊王, 金子 晃介, 石 偉, 芳賀 瑛

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    Grant type:Scientific research funding

    本研究は、種々のXR用デバイスに対応し様々な状況で実習を可能とする他、ヘッドマウントディスプレイ表示の組み合わせで自宅でも実習が行えるXR型電子教材の開発を可能とする開発基盤システムを研究開発し、XR型電子教材の開発と教育実践を通して、開発基盤システムの有用性を明らかにする。また、XR型電子教材を用いた場合に、学習者の学習意欲を高め、学習効果の高い授業を行うための学習データに基づいた教育手法(データ駆動型教育手法)を研究開発する。学習者の自学実習、教員と学習者の協調実習をそれぞれ可能とするほか、実習時行動データのAI分析により、実習効率の向上を図る支援機能と教育手法を研究開発する。

    CiNii Research

  • Development of radiation protection glasses for endoscopists with integrated dosimeter

    Grant number:22K07793  2022.4 - 2025.3

    Grants-in-Aid for Scientific Research  Grant-in-Aid for Scientific Research (C)

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    Grant type:Scientific research funding

    CiNii Research

  • 線量管理システムの機能追加に関する研究

    2022.4 - 2023.3

    共同研究

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    Authorship:Principal investigator  Grant type:Other funds from industry-academia collaboration

  • 実践的な課題解決能力を持つ高度放射線防護人材育成プログラム

    2022.1 - 2026.3

    原子力規制庁 原子力規制人材育成事業(日本) 

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    Authorship:Principal investigator 

  • デジタルトランスフォーメーションを活用した医療従事者の被ばく低減プログラムの開発と有効性の検証

    2022 - 2024

    科学研究費助成事業  厚生労働省 労災疾病臨床研究事業費補助金

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    Authorship:Principal investigator  Grant type:Competitive funding other than Grants-in-Aid for Scientific Research

  • 放射線業務従事者に対する健康診断の機関別実態調査

    2022

    科学研究費助成事業  厚生労働省 労災疾病臨床研究事業費補助金

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    Authorship:Coinvestigator(s)  Grant type:Competitive funding other than Grants-in-Aid for Scientific Research

  • 線量管理システムの機能追加に関する研究

    2021.4 - 2022.3

    共同研究

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    Authorship:Principal investigator  Grant type:Other funds from industry-academia collaboration

  • 実践的な課題解決能力を持つ高度放射線防護人材育成プログラム

    2021 - 2025

    科学研究費助成事業  令和3年度原子力人材育成等推進事業費補助金(原子力規制人材育成事業)

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    Authorship:Principal investigator  Grant type:Competitive funding other than Grants-in-Aid for Scientific Research

  • Development and practice of medical radiation technology educational materials utilizing XR technology

    Grant number:21K07703  2021 - 2023

    Japan Society for the Promotion of Science  Grants-in-Aid for Scientific Research  Grant-in-Aid for Scientific Research (C)

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    Authorship:Principal investigator  Grant type:Scientific research funding

    CiNii Research

  • 放射線教育のSTEAM化によるEBPM支援プログラムの開発

    Grant number:21H00920  2021 - 2023

    日本学術振興会  科学研究費助成事業  基盤研究(B)

    松田 尚樹, 中島 覚, 阿部 悠, 工藤 崇, 藤淵 俊王, 神田 玲子, 岡崎 龍史, 桧垣 正吾, 北 実, 角山 雄一

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    Authorship:Coinvestigator(s)  Grant type:Scientific research funding

    本研究では、STEAM(Science、Technology、Engineering、Art、Mathematics)の概念を取り入れた、放射線と自己の関わりにおいて意思決定を行い、具体的な行動につながる教育プログラムを構築する。研究プロセスとしてはまず受講者の意識調査及び放射線の測定値収集を行い、それらに基づく教育コンテンツを作成する。教育実践とブラッシュアップを経て、放射線EBPM(Evidence-Based Policy Making:証拠に基づく立案)支援プログラムを開発し、放射線関連学協会等との連携により発信、拡大、持続化を行う。

    CiNii Research

  • 眼の水晶体の放射線防護に資する機材開発推進および被ばく低減のための多角的研究

    Grant number:200601  2020 - 2022

    科学研究費助成事業  令和2年度労災疾病臨床研究事業費

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    Authorship:Coinvestigator(s)  Grant type:Competitive funding other than Grants-in-Aid for Scientific Research

  • 眼の水晶体の放射線防護に資する機材開発推進および被ばく低減のための多角的研究 (代表:千田 浩一(東北大学))

    2020 - 2022

    厚生労働省 労災疾病臨床研究事業費

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    Authorship:Coinvestigator(s)  Grant type:Contract research

  • 線量管理システムの機能追加に関する研究

    2019.6 - 2021.3

    共同研究

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    Authorship:Principal investigator  Grant type:Other funds from industry-academia collaboration

  • 放射線防護メガネの遮蔽効果について

    2019.2 - 2019.3

    受託研究

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    Authorship:Principal investigator  Grant type:Other funds from industry-academia collaboration

  • AIチャットボットを活用した自動応答被ばく相談支援システムによる効果的な情報の発信と収集

    2019

    環境省 放射線の健康影響に係る研究調査事業

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    Authorship:Principal investigator  Grant type:Contract research

  • Establishment for the Real-time visualization system of the radioactive material transfer in the small insect living outdoors..

    Grant number:18K19855  2018 - 2020

    Japan Society for the Promotion of Science  Grants-in-Aid for Scientific Research  Challenging Research(Exploratory)

    Nakajima Yumiko

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    Authorship:Coinvestigator(s)  Grant type:Scientific research funding

    By using a combination of commercially available cameras, PCs, custom-made scintillators, collimators, we aimed at investigating how radioactive isotopes (RI) moves in the body of minute insects that live in nature in real time by eating substances containing RI without killing them. The goal of the research was to build a portable system that can observe these dynamics in real time at low cost.
    As a result of various attempts, we decided to focus on the detection of gamma rays from cesium-137 remaining after the accident of the Fukushima Daiichi Nuclear Power Plant, and we conducted research on the construction of a gamma-ray camera using silkworm larvae. We could narrow down the problems and issues for future development of the portable gamma camera.

    CiNii Research

  • 第5回アジアオセアニア放射線防護会議への参加

    2018

    公益財団法人中谷医工計測技術振興財団平成29年度技術交流助成プログラム[海外派遣]

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    Authorship:Principal investigator  Grant type:Contract research

  • 平成29年度技術交流助成 交流プログラム【海外派遣】第4回助成

    2018

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    Grant type:Donation

  • 放射線診療におけるサイバーフィジカルシステムを活用した被ばく低減対策手法の構築

    2018

    平成30年度QRプログラム わかばチャレンジ

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    Authorship:Principal investigator  Grant type:On-campus funds, funds, etc.

  • 放射線診療従事者の不均等被ばく、とくに水晶体の管理に関する実態調査学術調査研究班

    2017.4 - 2019.3

    日本放射線技術学会 

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    Authorship:Principal investigator 

  • 原子力・医療従事者等の標準的な水晶体の等価線量モニタリング、適切な管理・防護はどうあるべきか?~水晶体被ばくの実態から探る~

    2017.4 - 2019.3

    原子力規制庁 

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    Authorship:Coinvestigator(s) 

  • 放射線診療従事者の不均等被ばく、とくに水晶体の管理に関する実態調査

    2017 - 2018

    日本放射線技術学会 学術調査研究班

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    Authorship:Principal investigator  Grant type:Contract research

  • 「原子力・医療従事者等の標準的な水晶体の等価線量モニタリング、適切な管理・防護はどうあるべきか?~水晶体被ばくの実態から探る~」の分担研究「医療機関における不均等被ばく管理の実態と非透視検査での水晶体等価線量の測定・評価方法に関する研究」(代表:横山須美(藤田保健衛生大学))

    2017 - 2018

    原子力規制庁平成29年度放射線対策委託費

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    Authorship:Coinvestigator(s)  Grant type:Contract research

  • 放射線治療トレーニングシステムによる患者セットアップ技術熟練度の客観的評価

    2017

    数理・データサイエンスに関する教育・研究支援プログラム

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    Authorship:Principal investigator  Grant type:On-campus funds, funds, etc.

  • 医療用リニアックからの光子線照射に伴う二次中性子線量計測

    2016.4 - 2020.3

    共同研究

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    Authorship:Collaborating Investigator(s) (not designated on Grant-in-Aid)  Grant type:Other funds from industry-academia collaboration

  • 乳児放射線検査における線量と画質の最適化手法の確立

    Grant number:16K10322  2016 - 2018

    日本学術振興会  科学研究費助成事業  基盤研究(C)

      More details

    Authorship:Principal investigator  Grant type:Scientific research funding

  • バーチャルリアリティ技術と角度情報センシング技術を統合した体感型放射線治療技術トレーニング手法の構築

    2016

    政策医療振興財団 平成28年度研究助成

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    Authorship:Principal investigator  Grant type:Contract research

  • X線作業に対応した小型・軽量・低価格なリアルタイム放射線検出器の開発

    2016

    平成28年度 マッチングプランナープログラム「探索試験」課題

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    Authorship:Principal investigator  Grant type:Contract research

  • 医療用X線ワイヤレス被ばく管理システムの開発

    2015.8 - 2016.7

    共同研究

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    Authorship:Collaborating Investigator(s) (not designated on Grant-in-Aid)  Grant type:Other funds from industry-academia collaboration

  • 医療用X線ワイヤレス被ばく管理システムの開発

    2015.8 - 2016.7

      More details

    Authorship:Principal investigator 

  • 医療用リニアックからの光子線照射に伴う二次中性子線量計測

    2015.1 - 2016.3

    共同研究

      More details

    Authorship:Collaborating Investigator(s) (not designated on Grant-in-Aid)  Grant type:Other funds from industry-academia collaboration

  • 医療用リニアックからの光子線照射に伴う二次中性子線量計測

    2015.1

      More details

    Authorship:Collaborating Investigator(s) (not designated on Grant-in-Aid) 

  • スーパーコンピュータを利用した放射線治療の高速モンテカルロシミュレーション

    2015 - 2016

    福岡県すこやか健康事業団平成27年度がん研究助成金

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    Authorship:Principal investigator  Grant type:Contract research

  • 日本放射線技術学会、短期留学生制度

    2014

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    Grant type:Donation

  • 教職員の海外派遣等支援

    2014

    九州大学基金

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    Authorship:Principal investigator  Grant type:On-campus funds, funds, etc.

  • シンチレーションファイバを用いたリアルタイム線量分布評価システムの開発

    Grant number:25750164  2013 - 2014

    科学研究費助成事業  若手研究(B)

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    Authorship:Principal investigator  Grant type:Scientific research funding

  • 陽子線治療における装置および患者から発生する中性子線量の弁別

    Grant number:22791209  2010 - 2011

    科学研究費助成事業  若手研究(B)

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    Authorship:Principal investigator  Grant type:Scientific research funding

▼display all

Educational Activities

  • I will provide education related to radiological technology to students who aim to work in the medical field or medical-related companies as a medical radiological technologist or medical physicist.

Class subject

  • 放射線治療技術学Ⅱ

    2024.6 - 2024.8   Summer quarter

  • Data Sciences in Health and Medicine

    2024.6 - 2024.8   Summer quarter

  • Radiological Protection

    2024.6 - 2024.8   Summer quarter

  • 放射線防護学

    2024.6 - 2024.8   Summer quarter

  • 保健医療とデータ科学

    2024.6 - 2024.8   Summer quarter

  • 放射化学実験

    2024.6 - 2024.8   Summer quarter

  • 画像解剖学演習Ⅱ

    2024.6 - 2024.8   Summer quarter

  • PhD Research in Health Science(Professor Fujibuchi)

    2024.4 - 2025.3   Full year

  • Thesis Research on Health Science in Asia(Professor Fujibuch

    2024.4 - 2025.3   Full year

  • 医用量子線科学特別研究(藤淵教授)

    2024.4 - 2025.3   Full year

  • 臨地実習

    2024.4 - 2025.3   Full year

  • Quantum Radiation Science and Technology Ⅰ

    2024.4 - 2024.9   First semester

  • International Presentation(Professor Fujibuchi)

    2024.4 - 2024.9   First semester

  • Practice in Radiological Protection

    2024.4 - 2024.9   First semester

  • Practice in Quantum Radiation Technology

    2024.4 - 2024.9   First semester

  • Practice in Quantum Radiation Therapy

    2024.4 - 2024.9   First semester

  • 量子線理工科学Ⅰ

    2024.4 - 2024.9   First semester

  • 放射線防護学演習

    2024.4 - 2024.9   First semester

  • 医用量子線理工学演習

    2024.4 - 2024.9   First semester

  • 量子線治療科学演習

    2024.4 - 2024.9   First semester

  • ヘルスサイエンス論

    2024.4 - 2024.9   First semester

  • 放射線技術科学入門Ⅰ

    2024.4 - 2024.9   First semester

  • 画像解剖学演習Ⅰ

    2024.4 - 2024.6   Spring quarter

  • 放射線治療技術学Ⅰ

    2024.4 - 2024.6   Spring quarter

  • 放射線管理学実験

    2024.4 - 2024.6   Spring quarter

  • 臨床解剖薬理学

    2023.12 - 2024.2   Winter quarter

  • 放射線管理学Ⅱ

    2023.12 - 2024.2   Winter quarter

  • Quantum Radiation Science and Technology Ⅱ

    2023.10 - 2024.3   Second semester

  • 量子線理工科学Ⅱ

    2023.10 - 2024.3   Second semester

  • 放射線治療技術学実習

    2023.10 - 2024.3   Second semester

  • 放射線画像技術学実習

    2023.10 - 2024.3   Second semester

  • 放射線技術科学入門Ⅱ

    2023.10 - 2024.3   Second semester

  • 放射線管理学Ⅰ

    2023.10 - 2023.12   Fall quarter

  • Data Sciences in Health and Medicine

    2023.6 - 2023.8   Summer quarter

  • Radiological Protection

    2023.6 - 2023.8   Summer quarter

  • 放射線防護学

    2023.6 - 2023.8   Summer quarter

  • 保健医療とデータ科学

    2023.6 - 2023.8   Summer quarter

  • 基礎医療統計

    2023.6 - 2023.8   Summer quarter

  • 医用量子線科学特別研究(藤淵教授)

    2023.4 - 2024.3   Full year

  • 臨地実習

    2023.4 - 2024.3   Full year

  • 保健学特別研究(藤淵教授)

    2023.4 - 2024.3   Full year

  • 国際プレゼンテーション(藤淵教授)

    2023.4 - 2024.3   Full year

  • Practice in Radiological Protection

    2023.4 - 2023.9   First semester

  • Practice in Quantum Radiation Technology

    2023.4 - 2023.9   First semester

  • Practice in Quantum Radiation Therapy

    2023.4 - 2023.9   First semester

  • 量子線理工科学Ⅰ

    2023.4 - 2023.9   First semester

  • 放射線防護学演習

    2023.4 - 2023.9   First semester

  • 医用量子線理工学演習

    2023.4 - 2023.9   First semester

  • 量子線治療科学演習

    2023.4 - 2023.9   First semester

  • 放射線治療技術学Ⅰ

    2023.4 - 2023.9   First semester

  • 放射線画像技術学Ⅰ

    2023.4 - 2023.9   First semester

  • 放射線技術科学入門Ⅰ

    2023.4 - 2023.9   First semester

  • 放射線管理学実験

    2023.4 - 2023.6   Spring quarter

  • 臨床解剖薬理学

    2022.12 - 2023.2   Winter quarter

  • 放射化学実験

    2022.12 - 2023.2   Winter quarter

  • Quantum Radiation Science and Technology Ⅱ

    2022.10 - 2023.3   Second semester

  • 量子線理工科学Ⅱ

    2022.10 - 2023.3   Second semester

  • 放射線治療技術学実習

    2022.10 - 2023.3   Second semester

  • 放射線画像技術学実習

    2022.10 - 2023.3   Second semester

  • 画像解剖学演習

    2022.10 - 2023.3   Second semester

  • 放射線管理学

    2022.10 - 2023.3   Second semester

  • Data Sciences in Health and Medicine

    2022.6 - 2022.8   Summer quarter

  • 保健医療とデータ科学

    2022.6 - 2022.8   Summer quarter

  • 放射線防護学

    2022.6 - 2022.8   Summer quarter

  • Radiological protection

    2022.6 - 2022.8   Summer quarter

  • 基礎医療統計

    2022.6 - 2022.8   Summer quarter

  • 臨地実習

    2022.4 - 2023.3   Full year

  • 国際プレゼンテーション(藤淵教授)

    2022.4 - 2023.3   Full year

  • 保健学特別研究(藤淵教授)

    2022.4 - 2023.3   Full year

  • 医用量子線科学特別研究(藤淵教授)

    2022.4 - 2023.3   Full year

  • Thesis Research on Health Science in Asia(Professor Fujibuch

    2022.4 - 2023.3   Full year

  • 放射線技術科学入門Ⅰ

    2022.4 - 2022.9   First semester

  • 放射線治療技術学Ⅰ

    2022.4 - 2022.9   First semester

  • 量子線治療科学演習

    2022.4 - 2022.9   First semester

  • 医用量子線理工学演習

    2022.4 - 2022.9   First semester

  • 放射線防護学演習

    2022.4 - 2022.9   First semester

  • 量子線理工科学Ⅰ

    2022.4 - 2022.9   First semester

  • Practice in Quantum Radiation Therapy

    2022.4 - 2022.9   First semester

  • Practice in Quantum Radiation Technology

    2022.4 - 2022.9   First semester

  • Practice in Radiological protection

    2022.4 - 2022.9   First semester

  • Quantum Radiation Science and Technology Ⅰ

    2022.4 - 2022.9   First semester

  • 放射線管理学実験

    2022.4 - 2022.6   Spring quarter

  • 臨床解剖薬理学

    2021.12 - 2022.2   Winter quarter

  • 放射化学実験

    2021.12 - 2022.2   Winter quarter

  • Quantum Radiation Science and Technology Ⅱ

    2021.10 - 2022.3   Second semester

  • 放射線管理学

    2021.10 - 2022.3   Second semester

  • 画像解剖学演習

    2021.10 - 2022.3   Second semester

  • 放射線画像技術学実習

    2021.10 - 2022.3   Second semester

  • 放射線治療技術学実習

    2021.10 - 2022.3   Second semester

  • 量子線理工科学Ⅱ

    2021.10 - 2022.3   Second semester

  • Data Sciences in Health and Medicine

    2021.6 - 2021.8   Summer quarter

  • 基礎医療統計

    2021.6 - 2021.8   Summer quarter

  • 保健医療とデータ科学

    2021.6 - 2021.8   Summer quarter

  • 医用量子線科学特別研究(藤淵教授)

    2021.4 - 2022.3   Full year

  • Thesis Research on Health Science in Asia(Professor Fujibuch

    2021.4 - 2022.3   Full year

  • Advanced International Presentation(Professor Fujibuchi)

    2021.4 - 2022.3   Full year

  • RhD Research in Health Science(Professor Fujibuchi)

    2021.4 - 2022.3   Full year

  • 国際プレゼンテーション(藤淵教授)

    2021.4 - 2022.3   Full year

  • 保健学特別研究(藤淵教授)

    2021.4 - 2022.3   Full year

  • Quantum Radiation Science and Technology Ⅰ

    2021.4 - 2021.9   First semester

  • 放射線技術科学入門Ⅰ

    2021.4 - 2021.9   First semester

  • 放射線治療技術学Ⅰ

    2021.4 - 2021.9   First semester

  • リプロサイエンスⅠ

    2021.4 - 2021.9   First semester

  • 量子線治療科学演習

    2021.4 - 2021.9   First semester

  • 医用量子線理工学演習

    2021.4 - 2021.9   First semester

  • 量子線理工科学Ⅰ

    2021.4 - 2021.9   First semester

  • International Presentation(Professor Fujibuchi)

    2021.4 - 2021.9   First semester

  • Practice in Quantum Radiation Therapy

    2021.4 - 2021.9   First semester

  • Practice in Quantum Radiation Technology

    2021.4 - 2021.9   First semester

  • 放射線管理学実験

    2021.4 - 2021.6   Spring quarter

  • X線CT画像技術学

    2021.4 - 2021.6   Spring quarter

  • 臨床解剖薬理学

    2020.12 - 2021.2   Winter quarter

  • 放射化学実験

    2020.12 - 2021.2   Winter quarter

  • Medical Image Sciences

    2020.10 - 2021.3   Second semester

  • 放射線技術科学入門Ⅱ

    2020.10 - 2021.3   Second semester

  • 放射線管理学

    2020.10 - 2021.3   Second semester

  • 画像解剖学演習

    2020.10 - 2021.3   Second semester

  • 放射線画像技術学実習

    2020.10 - 2021.3   Second semester

  • 放射線治療技術学実習

    2020.10 - 2021.3   Second semester

  • 医用画像科学論

    2020.10 - 2021.3   Second semester

  • 量子線理工科学Ⅱ

    2020.10 - 2021.3   Second semester

  • Quantum Radiation Science and Technology Ⅱ

    2020.10 - 2021.3   Second semester

  • IT in Health and Medicine

    2020.6 - 2020.8   Summer quarter

  • 基礎医療統計

    2020.6 - 2020.8   Summer quarter

  • 保健・医療とIT

    2020.6 - 2020.8   Summer quarter

  • 医用量子線科学特別研究(藤淵教授)

    2020.4 - 2021.3   Full year

  • 国際プレゼンテーション(藤淵教授)

    2020.4 - 2021.3   Full year

  • 保健学特別研究(藤淵教授)

    2020.4 - 2021.3   Full year

  • Quantum Radiation Science and Technology Ⅰ

    2020.4 - 2020.9   First semester

  • 放射線治療技術学Ⅰ

    2020.4 - 2020.9   First semester

  • リプロサイエンスⅠ

    2020.4 - 2020.9   First semester

  • 量子線治療科学演習

    2020.4 - 2020.9   First semester

  • 医用量子線理工学演習

    2020.4 - 2020.9   First semester

  • 量子線理工科学Ⅰ

    2020.4 - 2020.9   First semester

  • Practice in Quantum Radiation Therapy

    2020.4 - 2020.9   First semester

  • Practice in Quantum Radiation Technology

    2020.4 - 2020.9   First semester

  • 放射線管理学実験

    2020.4 - 2020.6   Spring quarter

  • X線CT画像技術学

    2020.4 - 2020.6   Spring quarter

  • 臨床解剖薬理学

    2019.12 - 2020.2   Winter quarter

  • 放射化学実験

    2019.12 - 2020.2   Winter quarter

  • Medical Image Sciences

    2019.10 - 2020.3   Second semester

  • 画像解剖学演習

    2019.10 - 2020.3   Second semester

  • 放射線管理学

    2019.10 - 2020.3   Second semester

  • 放射線画像技術学実習

    2019.10 - 2020.3   Second semester

  • 放射線治療技術学実習

    2019.10 - 2020.3   Second semester

  • 医用画像科学論

    2019.10 - 2020.3   Second semester

  • 量子線理工科学Ⅱ

    2019.10 - 2020.3   Second semester

  • 保健・医療とIT

    2019.6 - 2019.8   Summer quarter

  • 基礎医療統計

    2019.6 - 2019.8   Summer quarter

  • 医用量子線科学特別研究(藤淵教授)

    2019.4 - 2020.3   Full year

  • 保健学特別研究(藤淵教授)

    2019.4 - 2020.3   Full year

  • 量子線理工科学Ⅰ

    2019.4 - 2019.9   First semester

  • 放射線治療技術学Ⅰ

    2019.4 - 2019.9   First semester

  • リプロサイエンスⅠ

    2019.4 - 2019.9   First semester

  • 量子線治療科学演習

    2019.4 - 2019.9   First semester

  • 医用量子線理工学演習

    2019.4 - 2019.9   First semester

  • 放射線管理学実験

    2019.4 - 2019.6   Spring quarter

  • X線CT画像技術学

    2019.4 - 2019.6   Spring quarter

  • 医用画像科学論

    2018.10 - 2019.3   Second semester

  • 画像解剖学演習

    2018.10 - 2019.3   Second semester

  • 放射線管理学

    2018.10 - 2019.3   Second semester

  • 放射線画像技術学実習

    2018.10 - 2019.3   Second semester

  • 放射線治療技術学実習

    2018.10 - 2019.3   Second semester

  • 放射線画像技術学Ⅱ

    2018.10 - 2019.3   Second semester

  • 品質管理論

    2018.10 - 2019.3   Second semester

  • 医用画像科学論

    2018.10 - 2019.3   Second semester

  • 実践画像技術学

    2018.10 - 2019.3   Second semester

  • 放射線技術科学入門Ⅱ

    2018.10 - 2019.3   Second semester

  • 卒業研究(放射)

    2018.4 - 2019.3   Full year

  • 臨地実習

    2018.4 - 2019.3   Full year

  • 医用量子線科学特別研究(藤淵准教授)

    2018.4 - 2019.3   Full year

  • 臨地実習(放射)

    2018.4 - 2019.3   Full year

  • リプロサイエンスI

    2018.4 - 2018.9   First semester

  • 放射線技術科学入門Ⅰ

    2018.4 - 2018.9   First semester

  • 放射線生物学

    2018.4 - 2018.9   First semester

  • 放射線治療技術学Ⅰ

    2018.4 - 2018.9   First semester

  • 放射線画像技術学Ⅰ

    2018.4 - 2018.9   First semester

  • 放射線治療・核医学機器学

    2018.4 - 2018.9   First semester

  • X線CT画像技術学

    2018.4 - 2018.6   Spring quarter

  • 放射線管理学実験

    2018.4 - 2018.6   Spring quarter

  • 医用画像科学論

    2017.10 - 2018.3   Second semester

  • 実践画像技術学

    2017.10 - 2018.3   Second semester

  • 放射線技術科学入門Ⅱ

    2017.10 - 2018.3   Second semester

  • 医用画像科学論

    2017.10 - 2018.3   Second semester

  • 画像解剖学演習

    2017.10 - 2018.3   Second semester

  • 品質管理論

    2017.10 - 2018.3   Second semester

  • 品質管理論(平成25年度入学生用)

    2017.10 - 2018.3   Second semester

  • 放射線画像技術学II

    2017.10 - 2018.3   Second semester

  • 放射線治療技術学実習

    2017.10 - 2018.3   Second semester

  • 放射線画像技術学実習

    2017.10 - 2018.3   Second semester

  • 放射線計測学実験

    2017.6 - 2017.8   Summer quarter

  • 医用量子線科学特別研究(藤淵准教授)

    2017.4 - 2018.3   Full year

  • 臨地実習

    2017.4 - 2018.3   Full year

  • 量子線治療科学演習

    2017.4 - 2017.9   First semester

  • 放射線技術科学入門Ⅰ

    2017.4 - 2017.9   First semester

  • リプロサイエンスI

    2017.4 - 2017.9   First semester

  • 放射線治療技術学Ⅰ

    2017.4 - 2017.9   First semester

  • 放射線画像技術学Ⅰ

    2017.4 - 2017.9   First semester

  • 放射線治療・核医学機器学

    2017.4 - 2017.9   First semester

  • 放射線管理学実験

    2017.4 - 2017.6   Spring quarter

  • X線CT画像技術学

    2017.4 - 2017.6   Spring quarter

  • 放射化学・実験

    2016.10 - 2017.3   Second semester

  • 実践画像技術学

    2016.10 - 2017.3   Second semester

  • 放射線技術科学入門Ⅱ

    2016.10 - 2017.3   Second semester

  • 放射線画像技術学II

    2016.10 - 2017.3   Second semester

  • 品質管理論

    2016.10 - 2017.3   Second semester

  • 医用画像科学論

    2016.10 - 2017.3   Second semester

  • 卒業研究(放射)

    2016.4 - 2017.3   Full year

  • 医用量子線科学特別研究(藤淵准教授)

    2016.4 - 2017.3   Full year

  • 臨地実習

    2016.4 - 2017.3   Full year

  • 医用量子線科学特別研究(藤淵准教授)

    2016.4 - 2017.3   Full year

  • 放射線治療技術学Ⅰ

    2016.4 - 2016.9   First semester

  • 放射線技術科学入門Ⅰ

    2016.4 - 2016.9   First semester

  • 国際社会とチーム医療

    2016.4 - 2016.9   First semester

  • 放射線治療・核医学機器学

    2016.4 - 2016.9   First semester

  • 量子線治療科学演習

    2016.4 - 2016.9   First semester

  • 放射線計測学実験

    2016.4 - 2016.9   First semester

  • 放射線治療・核医学機器学

    2016.4 - 2016.9   First semester

  • 放射線生物学

    2016.4 - 2016.9   First semester

  • 人体の構造と機能ⅡB

    2015.10 - 2016.3   Second semester

  • 医用画像科学論

    2015.10 - 2016.3   Second semester

  • 放射化学・実験

    2015.10 - 2016.3   Second semester

  • 品質管理論

    2015.10 - 2016.3   Second semester

  • 放射線画像技術学実習

    2015.10 - 2016.3   Second semester

  • 放射線治療技術学実習

    2015.10 - 2016.3   Second semester

  • 放射線画像技術学II

    2015.10 - 2016.3   Second semester

  • 卒業研究(放射)

    2015.4 - 2016.3   Full year

  • 臨地実習

    2015.4 - 2016.3   Full year

  • 医用量子線科学特別研究(藤淵准教授)

    2015.4 - 2016.3   Full year

  • 量子線治療科学演習

    2015.4 - 2015.9   First semester

  • 放射線計測学実験

    2015.4 - 2015.9   First semester

  • 放射線生物学

    2015.4 - 2015.9   First semester

  • 放射線治療技術学Ⅰ

    2015.4 - 2015.9   First semester

  • 医用画像科学論

    2014.10 - 2015.3   Second semester

  • 人体の構造と機能ⅡB

    2014.10 - 2015.3   Second semester

  • 放射化学・実験

    2014.10 - 2015.3   Second semester

  • 放射線画像技術学実習

    2014.10 - 2015.3   Second semester

  • 放射線治療技術学実習

    2014.10 - 2015.3   Second semester

  • 品質管理論

    2014.10 - 2015.3   Second semester

  • 放射線衛生学

    2014.10 - 2015.3   Second semester

  • 臨地実習

    2014.4 - 2015.3   Full year

  • 卒業研究

    2014.4 - 2015.3   Full year

  • 核医学検査学Ⅰ

    2014.4 - 2014.9   First semester

  • 量子線治療科学演習

    2014.4 - 2014.9   First semester

  • 医用画像情報学実習

    2014.4 - 2014.9   First semester

  • 放射線機器学実験

    2014.4 - 2014.9   First semester

  • 放射線画像技術学実習

    2013.10 - 2014.3   Second semester

  • 医用画像科学論

    2013.10 - 2014.3   Second semester

  • 放射線衛生学

    2013.10 - 2014.3   Second semester

  • 品質管理論

    2013.10 - 2014.3   Second semester

  • 放射線治療技術学実習

    2013.10 - 2014.3   Second semester

▼display all

FD Participation

  • 2023.3   Role:Participation   Title:メンタルヘルス講演会

    Organizer:University-wide

  • 2023.3   Role:Participation   Title:全学FD:メンタルヘルス講演会

    Organizer:University-wide

  • 2022.12   Role:Participation   Title:医学系学府教育FD「医学系大学院プログラムの進化と深化をめざして」

    Organizer:[Undergraduate school/graduate school/graduate faculty]

  • 2022.12   Role:Participation   Title:医学系学府教育FD「医学系大学院プログラムの進化と深化をめざして」

    Organizer:[Undergraduate school/graduate school/graduate faculty]

  • 2022.9   Role:Participation   Title:保健学部門における国際化の推進とグローバル人材の育成

    Organizer:[Undergraduate school/graduate school/graduate faculty]

  • 2022.9   Role:Participation   Title:保健学部門における国際化の推進とグローバル人材の育成

    Organizer:Undergraduate school department

  • 2022.3   Role:Participation   Title:新M2Bシステムの使い方 ~新機能を中心に紹介します~

    Organizer:University-wide

  • 2022.3   Role:Participation   Title:新M2Bシステムの使い方 ~新機能を中心に紹介します~(3/14)

    Organizer:University-wide

  • 2022.3   Role:Participation   Title:リベラルサイエンス教育開発FD「今、教養教育に求められるもの:イギリス教養史にみる科学の受容から」

    Organizer:[Undergraduate school/graduate school/graduate faculty]

  • 2022.3   Role:Participation   Title:リベラルサイエンス教育開発FD「今、教養教育に求められるもの:イギリス教養史にみる科学の受容から」

    Organizer:University-wide

  • 2021.9   Role:Participation   Title:With/Postコロナ時代の保健学実習・講義のあり方

    Organizer:Undergraduate school department

  • 2021.9   Role:Participation   Title:M2B学習支援システム講習会★初級・中上級編★

    Organizer:University-wide

  • 2021.9   Role:Participation   Title:With/Postコロナ時代の保健学実習・講義のあり方

    Organizer:Undergraduate school department

  • 2021.9   Role:Participation   Title:M2B学習支援システム講習会★初級・中上級編★

    Organizer:Undergraduate school department

  • 2021.7   Role:Participation   Title:生体防御医学研究所FD

    Organizer:[Undergraduate school/graduate school/graduate faculty]

  • 2021.7   Role:Participation   Title:生体防御医学研究所FD

    Organizer:[Undergraduate school/graduate school/graduate faculty]

  • 2021.3   Role:Participation   Title:学習支援システム(M2B)講習会(オンライン開催)◇初級編・中・上級編◇13:00~15:00

    Organizer:University-wide

  • 2021.3   Role:Participation   Title:学習支援システム(M2B)講習会(オンライン開催)◇初級編・中・上級編◇13:00~15:00

    Organizer:University-wide

  • 2020.12   Role:Participation   Title:UQ-KU Education Forum 2020 (Day 2) −Teaching effectively in the time of COVID-19−

    Organizer:University-wide

  • 2020.12   Role:Participation   Title:UQ-KU Education Forum 2020 (Day 2) −Teaching effectively in the time of COVID-19−

    Organizer:[Undergraduate school/graduate school/graduate faculty]

  • 2020.12   Role:Participation   Title:UQ-KU Education Forum 2020 (Day 1) −Teaching effectively in the time of COVID-19−

    Organizer:[Undergraduate school/graduate school/graduate faculty]

  • 2020.9   Role:Participation   Title:遠隔授業の現状を踏まえた今後の活用に向けて!

    Organizer:Undergraduate school department

  • 2020.8   Role:Participation   Title:【IDE大学セミナー】大学教職員の多様な働き方について

  • 2020.3   Role:Participation   Title:M2B学習支援システム講習会◇入門・中級編◇(病院地区)09:30~12:00

    Organizer:University-wide

  • 2018.9   Role:Participation   Title:医学部保健学科の入試の在り方 ~新入試制度QUBE導入に向けて~

    Organizer:Undergraduate school department

  • 2017.9   Role:Participation   Title:三専攻共通教育の在り方

    Organizer:Undergraduate school department

  • 2015.9   Role:Participation   Title:教育力セルフマネジメントプログラム

    Organizer:Undergraduate school department

  • 2013.9   Role:Participation   Title:保健学科における教育方法の改善

    Organizer:Undergraduate school department

▼display all

Visiting, concurrent, or part-time lecturers at other universities, institutions, etc.

  • 2023  令和健康科学大学・看護学部  Classification:Part-time lecturer 

Participation in international educational events, etc.

  • 2022.3

    Universiti Malaya and Kyushu University

    Symposium on Intelligent Data Science for Radiological Imaging (iDSRI) between Universiti Malaya and Kyushu University

      More details

    Venue:オンライン

  • 2021.9

    Universiti Malaya and Kyushu University

    Symposium on Intelligent Data Science for Radiological Imaging (iDSRI) between Universiti Malaya and Kyushu University

      More details

    Venue:オンライン

  • 2021.9

    Diponegoro University and Kyushu University

    Rundown Activity of IndoseCT and PHITS Modeling Workshop

      More details

    Venue:オンライン

Other educational activity and Special note

  • 2024  Class Teacher 

  • 2023  Class Teacher 

  • 2022  Class Teacher 

  • 2021  Class Teacher 

  • 2018  Class Teacher 

  • 2017  Class Teacher 

  • 2016  Class Teacher 

  • 2015  Class Teacher 

  • 2014  Class Teacher 

▼display all

Outline of Social Contribution and International Cooperation activities

  • 公益社団法人日本放射線技術学会の代議員(平成27年~)を務める。
    平成26年3月に、高雄医学大学(台湾)を訪問し、診療放射線技師教育に関わる教員および学生と交流し親睦を深めた。
    平成26年7月から9月まで国際原子力機関(IAEA)にconsltantとして所属し、蛍光ガラス線量計による線量測定に関する基礎データの取得に努めた。

Social Activities

  • 令和5年度鹿児島県原子力防災訓練、放射線の基礎知識と原子力災害時の行動について

    鹿児島県危機管理防災局原子力安全対策課、公益財団法人原子力安全技術センター  朝陽地区コミュニティセンター、海陽高等学校体育館  2024.2

     More details

    Audience: General, Scientific, Company, Civic organization, Governmental agency

    Type:Seminar, workshop

  • 令和4年度鹿児島県原子力防災訓練、放射線の基礎知識と原子力災害時の行動について

    鹿児島県危機管理防災局原子力安全対策課、公益財団法人原子力安全技術センター  八重地区コミュニティセンター  2023.2

     More details

    Audience: General, Scientific, Company, Civic organization, Governmental agency

    Type:Seminar, workshop

  • 福岡県防災業務関係者研修(バス等輸送業者向け)

    福岡県、原子力安全技術センター  福岡県中小企業振興センター  2023.1

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    Audience: General, Scientific, Company, Civic organization, Governmental agency

    Type:Seminar, workshop

  • 福岡県原子力防災基礎研修(自治体職員等向け)

    福岡県、原子力安全技術センター  福岡県中小企業振興センター  2023.1

     More details

    Audience: General, Scientific, Company, Civic organization, Governmental agency

    Type:Seminar, workshop

  • 放射線の歴史と被ばくに対する考え方

    日本放射線技術学会 2021年度 市民公開講座 医療における放射線の利用  熊本城ホール、熊本市  2021.10

     More details

    Audience: General, Scientific, Company, Civic organization, Governmental agency

    Type:Lecture

  • 診療放射線技師養成機関はこんな場所 知っていますか? 診療放射線技師への道のり!

    第15回九州放射線医療技術学術大会 市民公開講座  長崎ブリックホール、長崎市  2020.11

     More details

    Audience: General, Scientific, Company, Civic organization, Governmental agency

    Type:Lecture

  • 放射線勉強会、講師

    九州電力  電気ビル、福岡市  2020.9

     More details

    Audience: General, Scientific, Company, Civic organization, Governmental agency

    Type:Seminar, workshop

  • 放射線勉強会、講師

    九州電力  電気ビル、福岡市  2020.9

     More details

    Type:Seminar, workshop

    researchmap

  • 2019年度 市民公開講座「専門家と学ぼう! 放射線事故・災害時に自分でできる放射線防護-良い事 vs. ダメな事-」、講師

    日本放射線技術学会  ビッグハート出雲  2019.11

     More details

    Audience: General, Scientific, Company, Civic organization, Governmental agency

    Type:Lecture

  • 2019年度 市民公開講座「専門家と学ぼう! 放射線事故・災害時に自分でできる放射線防護-良い事 vs. ダメな事-」、講師

    日本放射線技術学会  ビッグハート出雲  2019.11

     More details

    Type:Visiting lecture

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  • 原子力防災基礎研修、講師

    原子力安全技術センター  福岡市  2019.9

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    Audience: General, Scientific, Company, Civic organization, Governmental agency

    Type:Seminar, workshop

  • 原子力防災基礎研修、講師

    原子力安全技術センター  福岡市  2019.9

     More details

    Type:Seminar, workshop

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  • 平成26 年度 市民公開講座 放射線に対するリスクの正しい考え方 -放射線と上手に付き合うために-、講師

    日本放射線技術学会  大宮  2015.2

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    Audience: General, Scientific, Company, Civic organization, Governmental agency

    Type:Lecture

  • 平成26 年度 市民公開講座 放射線に対するリスクの正しい考え方 -放射線と上手に付き合うために-、講師

    日本放射線技術学会  大宮  2015.2

     More details

    Type:Visiting lecture

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  • 第9回九州放射線医療技術学術大会 市民公開講座「放射線検査と医療被ばく」 ~ 安心して放射線検査を受けていただくために ~

    日本放射線技術学会  北九州  2014.11

     More details

    Audience: General, Scientific, Company, Civic organization, Governmental agency

    Type:Lecture

  • 第9回九州放射線医療技術学術大会 市民公開講座「放射線検査と医療被ばく」 ~ 安心して放射線検査を受けていただくために ~

    日本放射線技術学会  北九州  2014.11

     More details

    Type:Visiting lecture

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  • 『医療被ばくに関する勉強会』 第4回 医療被ばくのリスク評価の考え方と患者説明について、講師

    九州医療センター、実践能力強化型チーム医療加速プログラム  九州医療センター  2014.5

     More details

    Audience: General, Scientific, Company, Civic organization, Governmental agency

    Type:Seminar, workshop

  • 『医療被ばくに関する勉強会』 第4回 医療被ばくのリスク評価の考え方と患者説明について、講師

    九州医療センター、実践能力強化型チーム医療加速プログラム  九州医療センター  2014.5

     More details

    Type:Seminar, workshop

    researchmap

  • 『医療被ばくに関する勉強会』 第3回 シミュレーションソフトを用いた線量評価について、講師

    九州医療センター、実践能力強化型チーム医療加速プログラム  九州医療センター  2014.4

     More details

    Audience: General, Scientific, Company, Civic organization, Governmental agency

    Type:Seminar, workshop

  • 『医療被ばくに関する勉強会』 第3回 シミュレーションソフトを用いた線量評価について、講師

    九州医療センター、実践能力強化型チーム医療加速プログラム  九州医療センター  2014.4

     More details

    Type:Seminar, workshop

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  • 『医療被ばくに関する勉強会』 第2回 診断領域の線量測定方法(CT,IVR)、講師

    九州医療センター、実践能力強化型チーム医療加速プログラム  九州医療センター  2014.3

     More details

    Audience: General, Scientific, Company, Civic organization, Governmental agency

    Type:Seminar, workshop

  • 『医療被ばくに関する勉強会』 第2回 診断領域の線量測定方法(CT,IVR)、講師

    九州医療センター、実践能力強化型チーム医療加速プログラム  九州医療センター  2014.3

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    Type:Seminar, workshop

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  • 『医療被ばくに関する勉強会』 第1回 診断領域の線量測定方法(一般撮影)、講師

    九州医療センター、実践能力強化型チーム医療加速プログラム  九州医療センター  2014.2

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    Audience: General, Scientific, Company, Civic organization, Governmental agency

    Type:Seminar, workshop

  • 『医療被ばくに関する勉強会』 第1回 診断領域の線量測定方法(一般撮影)、講師

    九州医療センター、実践能力強化型チーム医療加速プログラム  九州医療センター  2014.2

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    Type:Seminar, workshop

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  • 放射線に関する出前授業

    筑紫女学園中学校  2014.1

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    Audience: Infants, Schoolchildren, Junior students, High school students

    Type:Seminar, workshop

  • 放射線に関する出前授業

    筑紫女学園中学校  2014.1

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    Type:Seminar, workshop

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  • 改正放射線障害防止法と学会標準の概要

    福岡県消防学校  2013.11

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    Audience: Infants, Schoolchildren, Junior students, High school students

    Type:Seminar, workshop

  • 改正放射線障害防止法と学会標準の概要

    福岡県消防学校  2013.11

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    Type:Seminar, workshop

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  • 平成24 年度 市民公開講座 放射線に関する正しい教育を実施するための基礎講座、体験させる授業を目指して -放射線を見せるための方法-、講師

    日本放射線技術学会  つくば  2012.11

     More details

    Audience: General, Scientific, Company, Civic organization, Governmental agency

    Type:Lecture

  • 平成24 年度 市民公開講座 放射線に関する正しい教育を実施するための基礎講座、体験させる授業を目指して -放射線を見せるための方法-、講師

    日本放射線技術学会  つくば  2012.11

     More details

    Type:Visiting lecture

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  • 暮らしの中での放射線、医療放射線を考える、講演

    日本放射線技術学会  東京  2008.8

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    Audience: General, Scientific, Company, Civic organization, Governmental agency

    Type:Lecture

  • 暮らしの中での放射線、医療放射線を考える、講演

    日本放射線技術学会  東京  2008.8

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    Type:Visiting lecture

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Activities contributing to policy formation, academic promotion, etc.

  • 2020.12 - 2022.8   厚生労働省

    電離放射線障害防止に関する参考資料「医療分野における職業被ばくと放射線防護」のHP掲載

  • 2020.9 - 2025.3  

    原子力規制庁 「放射線対策委託費(国際放射線防護調査)事業」委員会委員

  • 2020.9 - 2022.8   国立研究開発法人 量子科学技術研究開発機構

    被ばく医療診療手引き編集委員会委員

  • 2019.10 - 2020.3  

    平成31年度放射線対策委託費(放射線安全規制研究戦略的推進事業「加速器施設の廃止措置に関わる放射化物の測定、評価方法の確立」)に係る研究検討委員会委員

  • 2017.10   放射線審議会 眼の水晶体の放射線防護検討部会

    第3回放射線審議会眼の水晶体の放射線防護検討部会 医療における水晶体の被ばくの現状 講演

Educational Activities for Highly-Specialized Professionals in Other Countries

  • 2023.8   Nuclear Regulatory Human Resource Development Project networking event

    Main countries of student/trainee affiliation:Korea, Republic of

  • 2021.9   Rundown Activity of IndoseCT and PHITS Modeling Workshop

    Main countries of student/trainee affiliation:Indonesia

Acceptance of Foreign Researchers, etc.

  • Dongseo University

    Acceptance period: 2023.12 - 2024.1   (Period):1 month or more

    Nationality:Korea, Republic of

  • Dongseo University

    Acceptance period: 2023.12 - 2024.1   (Period):1 month or more

    Nationality:Korea, Republic of

  • Dongseo University

    Acceptance period: 2023.8   (Period):Less than 2 weeks

    Nationality:Korea, Republic of

  • KANGWON NATINAL UNIVERSITY

    Acceptance period: 2023.8   (Period):Less than 2 weeks

    Nationality:Korea, Republic of

  • GIMCHEON UNIVERSITY

    Acceptance period: 2023.8   (Period):Less than 2 weeks

    Nationality:Korea, Republic of

  • KANGWON NATIONAL UNIVERSITY

    Acceptance period: 2023.8   (Period):Less than 2 weeks

    Nationality:Korea, Republic of

  • Diponegoro University

    Acceptance period: 2019.4   (Period):2weeks to less than 1 month

    Nationality:Indonesia

  • Institut Teknologi Bandung

    Acceptance period: 2016.10 - 2017.1   (Period):1 month or more

    Nationality:Indonesia

    Business entity:Japan Society for the Promotion of Science

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Travel Abroad

  • 2023.12

    Staying countory name 1:Turkey   Staying institution name 1:Istanbul University Oncology Institute

    Staying institution name 2:Nuclear Regulatory Agency

    Staying institution name 3:Hacettepe University Cancer Institute

    Staying institution name (Other):Ankara University Radiation Oncology

  • 2019.8

    Staying countory name 1:Indonesia   Staying institution name 1:17thSEACOMP, 3rd PIT-FMB, Bali

  • 2019.7

    Staying countory name 1:United States   Staying institution name 1:AAPM 61st Annual Meeting, San Antonio

  • 2019.3

    Staying countory name 1:Indonesia   Staying institution name 1:Diponegoro University

  • 2018.10

    Staying countory name 1:Sweden   Staying institution name 1:City Conference Centre, Stockholm

  • 2018.8

    Staying countory name 1:Indonesia   Staying institution name 1:MG Seton Hotel, Semarang

  • 2018.5

    Staying countory name 1:Australia   Staying institution name 1:AOCRP 5 at Melbourne Convention and Exhibition Centre

  • 2018.3

    Staying countory name 1:Thailand   Staying institution name 1:Chulalongkorn University

    Staying institution name 2:Mahidol University

  • 2018.2 - 2018.3

    Staying countory name 1:Indonesia   Staying institution name 1:Diponegoro University

    Staying institution name 2:Satya Wacana Christian University

    Staying institution name 3:Institute of Technology Bandung,

  • 2017.8

    Staying countory name 1:United States   Staying institution name 1:AAPM2017 at Colorado Convention Center

  • 2017.3

    Staying countory name 1:Korea, Republic of   Staying institution name 1:Korea University

  • 2016.12

    Staying countory name 1:Thailand   Staying institution name 1:International Conference On Medical Physics 2016 (ICMP2016)

    Staying institution name 2:Shangri-La Hotel

  • 2016.5

    Staying countory name 1:South Africa   Staying institution name 1:Cape Town International Convention Centre

  • 2015.12

    Staying countory name 1:Thailand   Staying institution name 1:Chulalongkorn University

    Staying institution name 2:Mahidol University

  • 2014.7 - 2014.9

    Staying countory name 1:Austria   Staying institution name 1:International Atomic Energy Agency Seibersdorf Laboratry

  • 2014.3

    Staying countory name 1:Korea, Republic of   Staying institution name 1:Korea University

  • 2014.3

    Staying countory name 1:Taiwan, Province of China   Staying institution name 1:Kaohsiung Medical University

  • 2007.7 - 2007.8

    Staying countory name 1:United States   Staying institution name 1:STANFORD UNIVERSITY SCHOOL OF MEDICAL Department of Radiology

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