Updated on 2024/10/30

Information

 

写真a

 
WAKAMIYA KOHEI
 
Organization
Faculty of Design Department of Acoustic Design Assistant Professor

School of Design Department of Design(Concurrent)
Graduate School of Design Department of Design(Concurrent)
Title
Assistant Professor
Contact information
メールアドレス
Tel
0925534547
Profile
The speech conversation is one of the most fundamental communication resources between human beings. Human beings move their articulators for something speaking and can produce speech sounds with variety qualities when they speak something. I would like to investigate how human beings produce these speech sounds. For this purpose, I would like to make an artificial speech production model analogous to the human speech mechanism. Now, my study interested in the three dimensional electromagnetic articulography which is used for observation inside and outside the vocal tract for analysis of the speech production mechanism. In addition, my research is interested in the source separation for the monaural recording sound and the auditory perceptual evaluation for the hoarseness voice, too. On the other hand, I am in charge of a class of Acoustics Lab I and II, Electric Lab, Information Theory, Speech Informatics, Acoustics programing Practice and Seminar etc.
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Research Areas

  • Informatics / Intelligent informatics

  • Nanotechnology/Materials / Applied condensed matter physics

  • Manufacturing Technology (Mechanical Engineering, Electrical and Electronic Engineering, Chemical Engineering) / Communication and network engineering

Degree

  • Ph.D in Engineering

Research History

  • - Research Associate, Fuculty of Design,

    2003

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  • - 九州大学 大学院芸術工学研究院 助手

    2003

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  • - 九州芸術工科大学芸術工学部 助手

    1997

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  • 九州芸術工科大学(1997/4--)

  • Kyushu Institute of Design

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  • Kyushu University

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  • Science and Technology.

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Education

  • Ehime University

    - 1997

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    Country: Japan

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  • Ehime University   Graduate School, Division of Science and Engineering

    - 1997

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  • Ehime University   Faculty of Engineering

    - 1992

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    Country: Japan

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  • Ehime University   Faculty of Engineering

    - 1992

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Research Interests・Research Keywords

  • Research theme:音声科学

    Keyword:音声科学

    Research period: 2024

  • Research theme:ディジタル磁気記録

    Keyword:ディジタル磁気記録

    Research period: 2024

  • Research theme:Speach production

    Keyword:Speach production

    Research period: 2024

  • Research theme:Study on an auditory perceptual evaluation for hoarseness

    Keyword:Hoarseness, GRBAS scale, automatic estimation, DNN, voice quality evaluation, auditory perceptual evaluation, reliability

    Research period: 2017.4

  • Research theme:A study of the source separation for the monaural recording sound.

    Keyword:monaural recording sound, source separation

    Research period: 2013.4 - 2015.5

  • Research theme:Study for observation and the analysis of the speech production mechanism

    Keyword:Speech production, Three-dimensional electro-magnetic articulography, Articulator movement, and Speech synthesis

    Research period: 2001.4

  • Research theme:Study for the high-density digital magnetic recording.

    Keyword:HDD, PRML, Equalization, Encoding, and Head/disk interaction

    Research period: 1997.4 - 2000.3

Papers

  • Interrupted mosaic speech revisited: Gain and loss in intelligibility by stretching Reviewed International journal

    @Kazuo Ueda, Masashi Hashimoto, @Hiroshige Takeichi, and @Kohei Wakamiya

    The Journal of the Acoustical Society of America   155 ( 3 )   1767 - 1779   2024.3

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

    DOI: https://doi.org/10.1121/10.0025132

  • Vocal Fold Vibration of the Whistle Register Observed by High-Speed Digital Imaging Reviewed International journal

    #Hikari KATO, #Yogaku LEE, @Kohei WAKAMIYA, @Takashi NAKAGAWA and @Tokihiko KABURAGI

    Journal of Voice   2023.6

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

    DOI: https://doi.org/10.1016/j.jvoice.2023.08.026

  • Automatic GRBAS Scoring of Pathological Voices using Deep Learning and a Small Set of Labeled Voice Data Reviewed International journal

    #Shunsuke HIDAKA, #Yogaku Lee, #Moe NAKANISHI, @Kohei WAKAMIYA, @Takashi NAKAGAWA, @Tokihiko KABURAGI

    Journal of Voice   2022.10

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

    DOI: https://doi.org/10.1016/j.jvoice.2022.10.020

  • Auditory grouping is necessary to understand interrupted mosaic speech stimuli Reviewed International journal

    Kazuo UEDA, @Hiroshige TAKEICHI, Kohei WAKAMIYA

    The Journal of the Acoustical Society of America   152 ( 2 )   970 - 980   2022.8   ISSN:0001-4966 eISSN:1520-8524

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

    DOI: 10.1121/10.0013425

    Web of Science

    Scopus

    PubMed

  • Improvement of measurement accuracy for the three-dimensional electromagnetic articulograph by optimizing the alignment of the transmitter coils Reviewed International journal

    Hidetsugu UCHIDA, Kohei WAKAMIYA, Kaburagi Tokihiko

    Acoustical Science and Technology   37 ( 3 )   106 - 114   2016.5

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

  • Three-dimensional electromagnetic articulgoraphy: A measurement principle Reviewed International journal

    Tokihiko KABURAGI, Kohei WAKAMIYA, Masaaki HONDA

    J. Acoust. Soc. Am.   118 ( 1 )   428 - 443   2005.7

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

    DOI: 10.1121/1.1928707

  • Estimation of the vocal tract spectrum from the articulatory movement usnig phneme-dependent neural networks Reviewed International journal

    Kohei WAKAMIYA, Takuya TSUJI and Tokihiko KABURAGI

    Proceedings of International Conference of Spoken Language Processing 2004   2004.10

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    Language:English   Publishing type:Research paper (international conference proceedings)  

  • An investigation of the measurement accuracy on the three-dimensional electromagnetic articulography Reviewed International journal

    Kohei WAKAMIYA, Tokihiko KABURAGI and Masaaki HONDA

    Proceedings of the 6th International Seminar on Speech Production   2003.12

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    Language:English   Publishing type:Research paper (international conference proceedings)  

  • Three-dimensional electromagnetic articulograph based on a nonparametric representation of the magnetic field Reviewed International journal

    Tokihiko KABURAGI, Kohei WAKAMIYA and Masaaki HONDA

    Prec. International Conference on Spoken Language Processing   2002.9

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    Language:English   Publishing type:Research paper (international conference proceedings)  

  • 狭トラック記録におけるヘッドフリンジ磁界の影響 Reviewed

    田中輝光, 若宮幸平, 鈴木俊行

    日本応用磁気学会   2000.4

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

  • Read/Write Track Fringe Effect of Thin Film and MR Head with Different Pole Shapes Reviewed

    Terumitsu TANAKA, Kohei WAKAMIYA and Toshiyuki SUZUKI

    IEICE Transactions on Electronics   1999.12

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

  • ディジタル磁気記録におけるパス帰還ビタビ復号法の誤り率特性 Reviewed

    岡本好弘, 稲井祐介, 若宮幸平, 斎藤秀俊, 大沢寿

    愛媛大学工学部紀要   1998.2

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

  • Interrupted mosaic speech revisited: Gain and loss in intelligibility by stretching (vol 155, pg 1767, 2024)

    Ueda, K; Hashimoto, M; Takeichi, H; Wakamiya, K

    JOURNAL OF THE ACOUSTICAL SOCIETY OF AMERICA   155 ( 5 )   3014 - 3014   2024.5   ISSN:0001-4966 eISSN:1520-8524

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  • Interrupted mosaic speech revisited: Gain and loss in intelligibility by stretching

    Ueda, K; Hashimoto, M; Takeichi, H; Wakamiya, K

    JOURNAL OF THE ACOUSTICAL SOCIETY OF AMERICA   155 ( 3 )   1767 - 1779   2024.3   ISSN:0001-4966 eISSN:1520-8524

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    Language:English   Publisher:Journal of the Acoustical Society of America  

    Our previous investigation on the effect of stretching spectrotemporally degraded and temporally interrupted speech stimuli showed remarkable intelligibility gains [Udea, Takeichi, and Wakamiya (2022). J. Acoust. Soc. Am. 152(2), 970-980]. In this previous study, however, gap durations and temporal resolution were confounded. In the current investigation, we therefore observed the intelligibility of so-called mosaic speech while dissociating the effects of interruption and temporal resolution. The intelligibility of mosaic speech (20 frequency bands and 20 ms segment duration) declined from 95% to 78% and 33% by interrupting it with 20 and 80 ms gaps. Intelligibility improved, however, to 92% and 54% (14% and 21% gains for 20 and 80 ms gaps, respectively) by stretching mosaic segments to fill silent gaps (n = 21). By contrast, the intelligibility was impoverished to a minimum of 9% (7% loss) when stretching stimuli interrupted with 160 ms gaps. Explanations based on auditory grouping, modulation unmasking, or phonemic restoration may account for the intelligibility improvement by stretching, but not for the loss. The probability summation model accounted for “U”-shaped intelligibility curves and the gain and loss of intelligibility, suggesting that perceptual unit length and speech rate may affect the intelligibility of spectrotemporally degraded speech stimuli.

    DOI: 10.1121/10.0025132

    Web of Science

    Scopus

    PubMed

  • Search for exclusive Higgs and <i>Z</i> boson decays to φγ and ργ with the ATLAS detector (vol 07, 127, 2018)

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    JOURNAL OF HIGH ENERGY PHYSICS   ( 12 )   2023.12   ISSN:1029-8479

  • Measurement of the inclusive <i>t</i>(<i>t</i>)over-bar production cross section in the lepton plus jets channel in <i>pp</i> collisions at √<i>s</i>=7 TeV with the ATLAS detector using support vector machines

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    PHYSICAL REVIEW D   108 ( 3 )   2023.8   ISSN:2470-0010 eISSN:2470-0029

  • Vocal Fold Vibration of the Whistle Register Observed by High-Speed Digital Imaging

    Kato H., Lee Y., Wakamiya K., Nakagawa T., Kaburagi T.

    Journal of Voice   2023   ISSN:08921997

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    Language:English   Publisher:Journal of Voice  

    Introduction: Singers use a whistle register to sing at a fundamental frequency above 1000 Hz. In previous studies, vocal fold vibrations with or without complete closure and partial vocal fold vibrations were observed depending on the subject. However, the production mechanism of the whistle register is not yet clearly understood because of the limitations of the imaging device for the glottis and subjects. Objectives: This study aims to examine vocal fold vibrations in a whistle register. Methods: The dynamic behavior of the glottis was recorded for six singers (four females and two males) using a high-speed digital imaging device with a frame rate above 10,000 fps. Audio signals were recorded simultaneously. The data were analyzed in the form of topography, glottal area waveforms, spectrograms, and phonovibrography to examine spatiotemporal patterns of glottal motion. Results: The vibratory motion of the vocal folds was classified into six patterns. The first pattern was the entire vocal fold vibration with complete closure during the closed phase. The second to fifth was the entire vocal fold vibration without complete closure, where a gap was observed for the full length of the vocal folds for the second, at the posterior part of the glottis for the third, at the anterior for the fourth, and at both ends for the fifth. In the sixth pattern, the vocal folds vibrated partially. Our results support the previous findings on the vibration of the vocal folds. In addition, we identified novel vibratory patterns in the vocal folds. Conclusion: We conclude that the production of the whistle register is not just an extension of the falsetto register to the higher fundamental-frequency region; rather, the production mechanism of the whistle register appeared to be diverse as a means of vocalization.

    DOI: 10.1016/j.jvoice.2023.08.026

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    PubMed

  • Two-particle Bose-Einstein correlations in <i>pp</i> collisions at √s=13 TeV measured with the ATLAS detector at the LHC

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Van Gemmeren, P; Van Vulpen, ; Vanadia, M; Vandelli, W; Vaniachine, A; Vannicola, D; Vari, R; Varnes, EW; Varni, C; Varol, T; Varouchas, D; Varvell, KE; Vasile, ME; Vasquez, GA; Vasquez, JG; Vazeille, F; Furelos, DV; Schroeder, TV; Veatch, J; Vecchio, V; Veen, MJ; Veloce, LM; Veloso, F; Veneziano, S; Ventura, A; Venturi, N; Verbytskyi, A; Vercesi, V; Verducci, M; Infante, CMV; Vergis, C; Verkerke, W; Vermeulen, AT; Vermeulen, JC; Vetterli, MC; Maira, NV; Pinto, MVB; Vickey, T; VickeyBoeriu, OE; Viehhauser, GHA; Vigani, L; Villa, M; Perez, MV; Vilucchi, E; Vincter, MG; Vinogradov, VB; Virdee, GS; Vishwakarma, A; Vittori, C; Vivarelli, ; Vogel, M; Vokac, P; von Buddenbrock, SE; Von Toerne, E; Vorobel, V; Vorobev, K; Vos, M; Vossebeld, JH; Vozak, M; Vranjes, N; Milosavljevic, MV; Vrba, V; Vreeswijk, M; Vuillermet, R; Vukotic, ; Wagner, P; Wagner, W; Wagner-Kuhr, J; Wahdan, S; Wahlberg, H; Wakamiya, K; Walbrecht, VM; Walder, J; Walker, R; Walker, SD; Walkowiak, W; Wallangen, ; Wang, AM; Wang, C; Wang, C; Wang, F; Wang, H; Wang, H; Wang, J; Wang, J; Wang, P; Wang, Q; Wang, RJ; Wang, R; Wang, R; Wang, SM; Wang, WT; Wang, WX; Wang, Y; Wang, Z; Wanotayaroj, C; Warburton, A; Ward, CP; Wardrope, DR; Warrack, N; Washbrook, A; Watson, AT; Watson, MF; Watts, G; Waugh, BM; Webb, AF; Webb, S; Weber, C; Weber, MS; Weber, SA; Weber, SM; Weidberg, AR; Weingarten, J; Weirich, M; Weiser, C; Wells, PS; Wenaus, T; Wengler, T; Wenig, S; Wermes, N; Werner, MD; Wessels, M; Weston, TD; Whalen, K; Whallon, NL; Wharton, AM; White, AS; White, A; White, MJ; Whiteson, D; Whitmore, BW; Wiedenmann, W; Wielers, M; Wieseotte, N; Wiglesworth, C; Wiik-Fuchs, LAM; Wilk, F; Wilkens, HG; Wilkins, LJ; Williams, HH; Williams, S; Willis, C; Willocq, S; Wilson, JA; Wingerter-Seez, ; Winkels, E; Winklmeier, F; Winston, OJ; Winter, BT; Wittgen, M; Wobisch, M; Wolf, A; Wolf, TMH; Wolff, R; Wölker, R; Wollrath, J; Wolter, MW; Wolters, H; Wong, VWS; Woods, NL; Worm, SD; Wosiek, BK; Wozniak, KW; Wraight, K; Wu, SL; Wu, X; Wu, Y; Wyatt, TR; Wynne, BM; Xella, S; Xi, Z; Xiao, X; Xu, D; Xu, H; Xu, L; Xu, T; Xu, W; Xu, Z; Xu, Z; Yabsley, B; Yacoob, S; Yajima, K; Yallup, DP; Yamaguchi, D; Yamaguchi, Y; Yamamoto, A; Yamane, F; Yamatani, M; Yamazaki, T; Yamazaki, Y; Yan, Z; Yang, HJ; Yang, HT; Yang, S; Yang, X; Yang, Y; Yao, WM; Yap, YC; Yasu, Y; Yatsenko, E; Ye, J; Ye, S; Yeletskikh, ; Yexley, MR; Yigitbasi, E; Yorita, K; Yoshihara, K; Young, CJS; Young, C; Yu, J; Yuan, R; Yue, X; Yuen, SPY; Zabinski, B; Zacharis, G; Zaffaroni, E; Zaitsev, AM; Zakareishvili, T; Zakharchuk, N; Zambito, S; Zanzi, D; Zaripovas, DR; Zeissner, S; Zeitnitz, C; Zemaityte, G; Zeng, JC; Zenin, O; Zenis, T; Zerwas, D; Zgubic, M; Zhang, DF; Zhang, F; Zhang, G; Zhang, H; Zhang, J; Zhang, L; Zhang, L; Zhang, M; Zhang, R; Zhang, X; Zhang, Y; Zhang, Z; Zhang, Z; Zhao, P; Zhao, Y; Zhao, Z; Zhemchugov, A; Zheng, Z; Zhong, D; Zhou, B; Zhou, C; Zhou, MS; Zhou, M; Zhou, N; Zhou, Y; Zhu, CG; Zhu, HL; Zhu, H; Zhu, J; Zhu, Y; Zhuang, X; Zhukov, K; Zhulanov, ; Zieminska, D; Zimine, N; Zimmermann, S; Zinonos, Z; Ziolkowski, M; Zivkovic, L; Zobernig, G; Zoccoli, A; Zoch, K; Zorbas, TG; Zou, R; Zwalinski, L

    EUROPEAN PHYSICAL JOURNAL C   82 ( 7 )   2022.7   ISSN:1434-6044 eISSN:1434-6052

  • Automatic GRBAS Scoring of Pathological Voices using Deep Learning and a Small Set of Labeled Voice Data

    Hidaka S., Lee Y., Nakanishi M., Wakamiya K., Nakagawa T., Kaburagi T.

    Journal of Voice   2022   ISSN:08921997

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    Language:English   Publisher:Journal of Voice  

    Objectives: Auditory-perceptual evaluation frameworks, such as the grade-roughness-breathiness-asthenia-strain (GRBAS) scale, are the gold standard for the quantitative evaluation of pathological voice quality. However, the evaluation is subjective; thus, the ratings lack reproducibility due to inter- and intra-rater variation. Prior researchers have proposed deep-learning-based automatic GRBAS score estimation to address this problem. However, these methods require large amounts of labeled voice data. Therefore, this study investigates the potential of automatic GRBAS estimation using deep learning with smaller amounts of data. Methods: A dataset consisting of 300 pathological sustained /a/ vowel samples was created and rated by eight experts (200 for training, 50 for validation, and 50 for testing). A neural network model that predicts the probability distribution of GRBAS scores from an onset-to-offset waveform was proposed. Random speed perturbation, random crop, and frequency masking were investigated as data augmentation techniques, and power, instantaneous frequency, and group delay were investigated as time-frequency representations. Results: Five-fold cross-validation was conducted, and the automatic scoring performance was evaluated using the quadratic weighted Cohen's kappa. The results showed that the kappa values of the automatic scoring performance were comparable to those of the inter-rater reliability of experts for all GRBAS items and the intra-rater reliability of experts for items G, B, A, and S. Random speed perturbation was the most effective data augmentation technique overall. When data augmentation was applied, power was the most effective for items G, R, A, and S; for Item B, combining group delay and power yielded additional performance gains. Conclusion: The automatic GRBAS scoring achieved by the proposed model using scant labeled data was comparable to that of experts. This suggests that the challenges resulting from insufficient data can be alleviated. The findings of this study can also contribute to performance improvements in other tasks such as automatic voice disorder detection.

    DOI: 10.1016/j.jvoice.2022.10.020

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  • AN INVESTIGATION OF THE EFFECTIVENESS OF PHASE FOR AUDIO CLASSIFICATION

    Hidaka, S; Wakamiya, K; Kaburagi, T

    2022 IEEE INTERNATIONAL CONFERENCE ON ACOUSTICS, SPEECH AND SIGNAL PROCESSING (ICASSP)   2022-May   3708 - 3712   2022   ISSN:1520-6149 ISBN:978-1-6654-0540-9

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    Publisher:ICASSP, IEEE International Conference on Acoustics, Speech and Signal Processing - Proceedings  

    While log-amplitude mel-spectrogram has widely been used as the feature representation for processing speech based on deep learning, the effectiveness of another aspect of speech spectrum, i.e., phase information, was shown recently for tasks such as speech enhancement and source separation. In this study, we extensively investigated the effectiveness of including phase information of signals for eight audio classification tasks. We constructed a learnable front-end that can compute the phase and its derivatives based on a time-frequency representation with mel-like frequency axis. As a result, experimental results showed significant performance improvement for musical pitch detection, musical instrument detection, language identification, speaker identification, and birdsong detection. On the other hand, overfitting to the recording condition was observed for some tasks when the instantaneous frequency was used. The results implied that the relationship between the phase values of adjacent elements is more important than the phase itself in audio classification.

    DOI: 10.1109/ICASSP43922.2022.9746037

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Books

  • 音響設計学入門 音・音楽・テクノロジー

    九州芸術工科大学音響設計学科編, 井上公子, 岩宮眞一郎, 上田裕市, 緒方敏郎, 尾本章, 河原一彦, 河辺哲次, 鈴木俊行, 高木英行, 津村尚志, 鳥原秀男, 中島祥好, 福留公利, 藤原恭司, 松永建,( Role: Joint author)

    九州大学出版会  2000.12 

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

Presentations

  • 高速度ディジタル撮像を用いたボーカルフライ声区における声帯振動の分析

    #加藤日花里,#李庸學,@鏑木時彦,@若宮幸平

    日本音響学会 2023年秋季研究発表会  2023.9 

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    Event date: 2023.9

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:名古屋工業大学   Country:Japan  

    HSDIを用いてボーカルフライ発声時の声帯振動を分析し、発声メカニズムの解明を試みた。低音域ボーカルフライでは長い閉鎖期とパルス状の開放期からなる声帯振動が観察され、振動部位は被験者によって異なった。高音域ボーカルフライでは非周期的な振動が観察された。いずれの場合もOQは地声声区より小さかったが、呼気発声時よりも吸気発声時に大きくなった。

  • INTERRUPTED MOSAIC SPEECH REVISITED: A CURIOUS BIPHASIC EFFECT OF STRETCHING ON INTELLIGIBILITY International conference

    @Kazuo Ueda, Masashi Hashimoto, @Hiroshige Takeichi, and @Kohei Wakamiya

    the 39th Annual Meeting of the International Society for Psychophysics (ISP)  2023.9 

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    Event date: 2023.9

    Language:English   Presentation type:Oral presentation (general)  

    Country:Italy  

  • 断続伸長モザイク音声:時間分解精度と断続が了解度におよぼす効果の分離

    #橋本将史, @上田和夫, @竹市博臣, @若宮幸平, @ジェラードB. レメイン

    日本音響学会 聴覚研究会  2022.12 

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    Event date: 2022.12

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:九州大学大橋キャンパス   Country:Japan  

    モザイク音声 (階段状の時間スペクトル包絡で雑音駆動した音声) を断続および伸長した音声の了解度について調べた。これまで, 区間長 80 ms の断続モザイク音声の了解度は 0%近くになるとされていた。しかし, このような区間長と了解度の関係がモザイク音声の時間分解精度を保った場合でも成り立つかどうかは不明であった。ここでは元のモザイク区間長を 20 ms で固定し, 断続の効果を独立させた。周波数帯域数は 20 に固定した。断続モザイク音声の了解度は断続区間長 160 ms までは緩やかに低下した。一方で, モザイク区間を伸長し空白を縮小すると, 最大で25%の了解度向上が見られた。本研究により, モザイク音声刺激における断続と伸長の効果がより明瞭になった。

  • 高速度ディジタル撮像に基づいたホイッスル声区の声帯振動パターンの分類

    #加藤 日花里, #李 庸學, @若宮 幸平, @鏑木 時彦

    日本音響学会 2022年秋季研究発表会  2022.9 

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    Event date: 2022.9

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:北海道科学大学   Country:Japan  

    歌唱声区の中で最も基本周波数の高いホイッスル声区における声帯振動メカニズムを明らかにするため、本研究では、10000 fps を超えるフレームレートの高速度ディジタル撮像(HSDI)によって、4 名の歌手の喉頭を観察し、声門面積波形とフォノバイブログラム(PVG)からスペクトルと声門開放率を算出して分析を行った。観測された声帯振動パターンは声門の閉鎖状態から(a)完全閉鎖、(b)不完全閉鎖、(c)部分閉鎖の3パターンに分類することができた。PVG は声帯長方向の声帯振動情報を表すことができ、声帯振動様態の
    分析に有効であった。先行研究ではそれぞれのパターンは単独で確認されていたが、本研究では、3 つの振動パターンは同時に存在することが明らかになり、ホイッスル声区は単なる超高音域の裏声ではなく、声帯音源の生成に多様性を持つ声区と考えられる。

  • Auditory grouping by stretching: Regaining intelligibility of interrupted mosaic speech stimuli

    @Kazuo UEDA, @Hiroshige TAKEICH, @Kohei WAKAMIYA, @Gerard B. REMIJN

    2022.9 

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    Event date: 2022.9

    Language:English   Presentation type:Oral presentation (general)  

    Country:Japan  

  • 少量ラベル付きデータを用いた病的音声の声質自動評価

    #日髙駿介,#李庸學,@中西萌,@若宮幸平,@中川尚志,@鏑木時彦

    日本音響学会 2022年秋季研究発表会  2022.9 

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    Event date: 2022.9

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:北海道科学大学   Country:Japan  

    音声医学の臨床で行われる病的音声の声質の聴覚印象評価(GRBAS尺度)には, 評者間・評者内変動が原因で再現性に欠ける問題がある. 機械学習に基づく声質評価は再現性の問題を解決するが, ラベル付きデータを大量に集めることは困難である. 本研究では, ラベル付きデータが少ない状況下での高精度なGRBAS自動判定の再現を試みた. 8名の専門家により付与されたGRBAS評価が付された300の病的音声サンプルからなるデータセットを構築し, ネットワークの性能評価を行ったところ, 最良の推定条件では, 自動推定の評価は, GRBAS全項目で専門家の評者管信頼性に匹敵し, 項目G, B, A, Sで専門家の評者内信頼性に匹敵する結果が得られた.

  • AUDITORY GROUPING FACILITATES UNDERSTANDING INTERRUPTED MOSAIC SPEECH STIMULI International conference

    @Kazuo Ueda, @Hiroshige Takeichi, @Kohei Wakamiya

    38th Annual Meeting of the International Society for Psychophysics  2022.8 

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    Event date: 2022.8

    Language:English   Presentation type:Oral presentation (general)  

    Country:Sweden  

  • AN INVESTIGATION OF THE EFFECTIVENESS OF PHASE FOR AUDIO CLASSIFICATION International conference

    #Shunsuke HIDAKA, @Kohei WAKAMIYA, @Tokihiko KABURAGI

    2022 IEEE International Conference on Acoustics, Speech, and Signal Processing (ICASSP 2022)  2022.5 

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    Event date: 2022.5

    Language:English   Presentation type:Oral presentation (general)  

    Country:Singapore  

  • 音分類課題において有効な位相情報の表現に関する検討

    #日髙 駿介, @若宮 幸平, @鏑木 時彦

    日本音響学会 2021年秋季研究発表会  2021.9 

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    Event date: 2021.9

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:online   Country:Japan  

    音声強調などでは入力特徴量の位相情報が有用であることが確かめられている. 本研究では, 対数振幅メルスペクトログラムに類する時間周波数表現への位相情報の付与が性能向上に寄与するかどうかを調査した. 具体的には, 位相に関する情報として位相, 群遅延, 瞬時周波数を比較した. 調査のために, 音声や環境音など複数の分類課題を用いて, 性能を評価した. 音声の分類課題では位相情報, 特に群遅延が性能向上に寄与する傾向が見られた. その一方で, 環境音分類や鳥の存在判定では, 一部例外を除き, 位相情報の付与は性能低下に繋がった.

  • 聴覚心理的評価の再現性について

    #中西 萌, #日髙 駿介, #李 庸學, @若宮 幸平, @中川 尚志, @鏑木 時彦

    日本音響学会 2021年秋季研究発表会  2021.9 

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    Event date: 2021.9

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:online   Country:Japan  

    声質に異常がある音声を嗄声と呼び,耳鼻咽喉科では GRBAS 尺度をはじめとする聴覚心理的評価法を用いて嗄声の程度を評価・記録する. これらの評価法は, 主観評価であるために再現性の問題がある. 評者の評定の信頼性の評価については, 再現性の評価に用いる統計量によって結果に違いが出てくる. 本研究では,単一の評者が複数回評価を行った時の一致の度合いを示す評者内信頼性を対象とし, 信頼性の評価については, 従来法よりも頑強とされている Gwet の AC2を用いて分析を行った. その結果, 評者の経験年数と職業,患者の性別による嗄声評価の再現性への影響を調べた結果,評者の経験年数による影響が最も大きかった.経験年数が長いほど再現性が高い傾向があり,短い評者は再現性の高さの個人差が大きかった.

  • Automatic Estimation of Pathological Voice Quality based on Recurrent Neural Network using Amplitude and Phase Spectrogram International conference

    #Shunsuke Hidaka1, #Yogaku Lee, @Kohei Wakamiya, @Takashi Nakagawa, @Tokihiko Kaburagi

    Interspeech 2020  2020.10 

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    Event date: 2020.10

    Language:English   Presentation type:Oral presentation (general)  

    Country:China  

  • 振幅および位相スペクトルを考慮した病的音声の声質評価

    #日髙駿介, #李庸學, @若宮幸平, @中川尚志, @鏑木時彦

    日本音響学会2020年秋季研究発表会  2020.9 

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    Event date: 2020.9

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:online   Country:Japan  

    スペクトル時系列を入力とし,GRBAS尺度の各項目について,その評点を分類問題として出力する DNN を構築した。実験により,振幅情報だけでなく位相情報も有効な入力特徴量になりうることを示した.

  • Automatic Evaluation of Voice Severity using Deep Neural Network International conference

    #Shunsuke Hidaka, #Yogaku Lee, @Kohei Wakamiya, @Takashi Nakagawa, @Tokihiko Kaburagi

    The Voice Foundation's VIRTUAL VOICE SYMPOSIUM Care of the Professional Voice  2020.5 

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    Event date: 2020.5

    Language:English  

    Country:Other  

  • Deep Neural Networkを用いた病的音声の声質評価

    #日髙駿介, #李庸學, @若宮幸平, @中川尚志, @鏑木時彦

    日本音響学会 2019年 秋季研究発表会  2019.9 

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    Event date: 2019.9

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:立命館大学びわこ・草津キャンパス   Country:Japan  

    病的音声の声質の聴覚心理的評価法としてGRBAS尺度が国内外で広く使用されている. しかしながら, GRBAS尺度は, 評者間変動や評者内変動が原因となり, 再現性に欠けるという問題点がある. 本研究では, GRBAS尺度の評点をDeep Neural Network(DNN)を用いて出力することにより, この問題の解決を図る. 今回使用したDNNは, GRBAS各項目について, Bidirectional GRUと全結合層を縦続接続する形で構成した. 入力特徴量としては, 持続母音/a/の起声から終声までの対数振幅スペクトログラムおよび位相変化スペクトログラムを比較した, その結果, 項目GRBSについて,位相変化スペクトログラムが対数振幅スペクトログラムに対して優位性を示す実験結果が得られた.

  • 九州大学芸術工学部の施設公開事業における音響関連展示 -2019年の事例報告-

    @河原一彦,@高田正幸,@尾本章,@鏑木時彦,@鮫島俊哉,@山内勝也,@若宮幸平

    日本音響学会 2019年 秋季研究発表会  2019.9 

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    Event date: 2019.9

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:立命館大学びわこ・草津キャンパス   Country:Japan  

    九州大学芸術工学部は, 5月ごろに施設公開事業を行っており, 音響関連の展示を行っている. 本稿では, 2019年5月25日開催の施設公開事業「デザインのフシギ体験」から, 「音響樽で聞いてみよう」, 「楽器音の合成を体感」, 「音声の仕組みを探る」, 「ダミーヘッドとお話ししよう」, 「無響室へようこそ」の5つの音響関連の企画について概要を報告する.

  • 大規模日本語調音・音声パラレルデータの収集

    @若宮 幸平, #田口 史朗, #渡辺 莉子, @桂田 浩一, @牧野 武彦, @鏑木 時彦

    音声研究会  2019.6 

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    Event date: 2019.6

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:東京工業大学   Country:Japan  

    調音データを用いた自然な音声の合成やサイレントスピーチインタフェース構築等のための基礎的データ として, 日本語調音・音声パラレルデータの収集を行っているので報告する. 現在収集中のデータは, 3次元磁気セン サシステム(3D-EMA)を用いて測定した調音運動データ, 並びに, それと同期した音声信号データ, EGG信号データ, 音素セグメントデータである. 発話者は1名, 発話内容はATR503文と新たに構築した1,298文の日本語音素バランス 文セットの計1,811文, 発話時間は67分, モーラ数は29,611となっている.

  • Deep Neural Networkを用いた嗄声度の自動推定

    #日高 駿介, #李 庸學, @若宮 幸平, @中川 尚志, @鏑木 時彦

    日本音響学会聴覚研究会  2018.12 

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    Event date: 2018.12

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:福岡   Country:Japan  

    声質の聴覚心理評価は音声障害の臨床において広く用いられているが, 評者間変動や評者内変動が原因となり, 再現性に欠ける問題がある. この問題点は, 声質評価の自動推定により解決可能であると考えれれる. 本論では, 嗄声の評価基準として国内外で使用されているGRBAS尺度の全項目の評点を出力するDeep Neural Network(DNN)を構築した. DNNはBidirectional GRUと全結合層から構成される. 特徴量として持続母音/a:/の起声から終声までのスペクトログラムおよびメルスペクトログラムを比較した. 1名の耳鼻咽喉科医により, 全ての正解ラベルを付与したデータセットを作成した. 3118サンプルを含むデータセットに対して5分割交差検証を行った結果, GRBASの正解率は平均で60%となった.

  • ALIGNMENT OF THE TRANSMITTER COILS IN THE THREE-DIMENSIONAL ELECTROMAGNETIC ARTICULOGRAPHY HAVING EIGHT TRANSMISSION CHANNELS International conference

    Kohei WAKAMIYA, Hidetsugu UCHIDA, Tokihiko Kaburagi

    Youngnam-Kyushu Joint Conference on Acoustics 2017  2017.2 

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    Event date: 2017.2

    Language:English   Presentation type:Oral presentation (general)  

    Country:Korea, Republic of  

  • 8個の送信チャネルを持つ磁気センサシステムの検討

    若宮 幸平, 内田 秀継, 鏑木 時彦

    日本音響学会 2016年秋季研究発表会  2016.9 

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    Event date: 2016.9

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:富山大学   Country:Japan  

    調音観測用3次元磁気センサシステムの位置推定精度の改善のため, 送信チャネル数を6個から8個に増やした場合の送信チャネルの設置位置について, 位置推定シミュレーションにより検討を行った. その結果, サイズを縮小して送信コイルと測定領域を近接させる設定とすることで, 高精度の位置推定ができる可能性が示された.

  • 最適配置された送信コイルをもつ3 次元磁気センサシステムの構築

    若宮 幸平, 内田 秀継, 鏑木 時彦

    日本音響学会 2016年春季研究発表会  2016.3 

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    Event date: 2016.3

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:桐蔭横浜大学   Country:Japan  

    非決定性の問題を低減するように最適配置された送信コイルを持つ3次元磁気センサシステムを構築したので, 構築した3次元磁気センサシステムの構成, 調音データの観測法について述べた. 本システムを用いた観測実験の結果, 成人男性話者による連続母音/aiueo/の調音運動の観測結果は各母音の調音的特徴をよく反映したものであった.

  • The Effect of Additional Transmission Channels in Three-dimensional Electromagnetic Articurography International conference

    Kohei WAKAMIYA, Hidetsugu UCHIDA, Tokihiko Kaburagi

    Kyushu-Youngnam Joint Conference on Acoustics 2015  2015.1 

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    Event date: 2015.1

    Language:English   Presentation type:Oral presentation (general)  

    Country:Japan  

  • A Study on the Improvement of Measurement Accuracy of the Three-Dimensional Electromagnatic Articulography International conference

    Hidetsugu UCHIDA, Kohei WAKAMIYA, Tokihiko Kaburagi

    Interspeech 2014  2014.9 

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    Event date: 2014.9

    Language:English   Presentation type:Oral presentation (general)  

    Country:Singapore  

  • A study on the improvement of measurement accuracy of the three-dimensional electromagnetic articulography

    Hidetsugu Uchida, Kohei Wakamiya, Tokihiko Kaburagi

    15th Annual Conference of the International Speech Communication Association: Celebrating the Diversity of Spoken Languages, INTERSPEECH 2014  2014.1 

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    Event date: 2014.9

    Language:English  

    Country:Singapore  

  • 3次元磁気センサシステムにおける送信チャネル数に関する検討

    若宮 幸平, 内田 秀継, 鏑木 時彦

    日本音響学会 2014年 秋季研究発表会  2014.9 

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    Event date: 2014.9

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:北海学園大学, 札幌   Country:Japan  

    3次元磁気センサシステム(3D-EMA)において, 複数の受信コイル状態(位置と傾き)の受信信号予測値がほぼ同一になることに起因する大きな位置推定誤差を解消するため, 領域内の任意の2点間の受信信号の差の最小値を評価基準として導入し, それを最大にする送信コイル配置が提案されているが, 受信コイルの向きがEMAの筐体に対して傾いており, 実用上の問題があった. 本研究では, 受信コイルの基準方向を筐体の軸に平行な方向に変更し, 上記評価基準により, コイルの取り付け角度を最適化した. また, 送信チャネルを増やした場合についても同様の最適化を行い, 得られた送信コイル配置に対して, 位置推定シミュレーション実験を行った. その結果, 送信チャネル数を増やすに従い, 位置推定精度は向上し, 送信チャネル数を8とした場合, 最大誤差が1mm以下となる可能性があることがわかった.

  • 三次元磁気センサシステムにおける送信コイルの配置の最適化についての検討

    内田秀継, 若宮 幸平, 鏑木 時彦

    電子情報通信学会 音声研究会  2013.11 

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    Event date: 2013.11

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:奈良先端科学技術大学院大学   Country:Japan  

    三次元磁気センサシステムでは, 受信コイルから得られる受信信号が送信コイルとの位置関係により定まることを利用し位置推定を行うが, 受信コイルの位置が異なるにもかかわらず受信信号がほぼ等しくなる場合, 受信コイルの位置を受信信号から一意に決めることが出来ないという問題が発生する. 本研究では, 送信コイルの配置を最適化することでこの非決定性の問題を解決することを試みた. 測定領域内に受信コイルの位置と傾きに関する多数の標本点を設け, その任意の2点間の受信信号差が最大になるように送信コイル配置を最適化し, 位置推定シミュレーションを行ったところ, 非決定性の問題の緩和が確認された. さらに, その配置をシステムに実装し, 位置推定実験により推定制度を検証した結果, 平均位置誤差0.4mmの精度を得た.

  • 3次元磁気センサシステムにおける送信コイル配置の検討と精度評価

    内田 秀継, 若宮 幸平, 鏑木 時彦

    音響学会秋季研究発表会  2013.9 

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    Event date: 2013.9

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:豊橋技術科学大学   Country:Japan  

    3次元磁気センサシステムにおいて, 位置推定における非決定性の問題があることが明らかとなり, その対応策として, 信号分離度という指標を導入することで, 最適な送信コイルについて検討し, その位置推定精度を実測で検証した.

  • 3次元磁気センサシステムにおける送信コイル配置の検討

    内田 秀継, 若宮 幸平, 鏑木 時彦

    音響学会秋季研究発表会  2012.9 

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    Event date: 2012.9

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:信州大学   Country:Japan  

    3次元磁気センサシステムにおいて, 位置推定における非決定性の問題があることが明らかとなり, その対応策として, 信号分離度という指標を導入することで, 最適な送信コイルについて検討した.

  • 佐賀県立宇宙科学館「平成15年春の企画展 音と響のテクノロジー」の概要と展示計画支援

    河原一彦, 若宮 幸平

    音響学会秋季研究発表会  2011.9 

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    Event date: 2011.9

    Presentation type:Oral presentation (general)  

    Venue:九州大学   Country:Japan  

    2003年(平成15年)2月22日から4月20日に, 佐賀県立宇宙科学館で開催された「平成15年春の企画展 音と響のテクノロジー」の概要と, 著者らが支援した展示計画について報告する.

  • [チュートリアル招待講演]高校生のための音響サイエンスキャンプ ~先進的科学技術体験合宿プログラムによる音響入門講座~ Invited

    若宮 幸平, 高田 正幸, 河辺 哲次, 鮫島 俊哉, 中島 祥好, 上田 和夫, 鏑木 時彦

    電子通信情報学会 音声研究会  2010.6 

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    Event date: 2010.6

    Presentation type:Oral presentation (general)  

    Venue:九州大学   Country:Japan  

  • Estimation of the vocal tract spectrum from articulatory movements using phoneme-dependent neural networks

    Kohei Wakamiya, Tokihiko Kaburagi, Takuya Tsuji, Jiji Kim

    8th International Conference on Spoken Language Processing, ICSLP 2004  2004.1 

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    Event date: 2004.10

    Language:English  

    Country:Korea, Republic of  

  • Three-dimensional electromagnetic articulograph based ona nonparametric representation of the magnetic field

    Tokihiko Kaburagi, Kohei Wakamiya, Masaaki Honda

    7th International Conference on Spoken Language Processing, ICSLP 2002  2002.1 

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    Event date: 2002.9

    Language:English  

    Country:United States  

  • 薄膜ディスクにおける記録・再生にじみに関する検討

    田中輝光, 若宮幸平, 鈴木俊行

    第22買い日本応用磁気学会学術講演会  1998.9 

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    Presentation type:Oral presentation (general)  

    Venue:北海道大学(札幌市)   Country:Japan  

  • 薄膜ディスクにおける記録・再生にじみの発生機構

    田中輝光, 若宮幸平, 鈴木俊行

    平成10年度電気関係学会九州支部連合大会  1998.10 

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    Presentation type:Oral presentation (general)  

    Venue:大分大学, 大分市   Country:Japan  

  • 仮想計測器による軟磁性用M-Hループトレーサの性能改善

    若宮幸平, 姜小明, 鈴木俊行

    平成10年度電気関係学会九州支部連合大会  1998.10 

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    Presentation type:Oral presentation (general)  

    Venue:大分大学, 大分市   Country:Japan  

  • Read/Write Track Fringe Width in Thin Film Disks International conference

    Terumitsu TANAKA, Kohei WAKAMIYA, Toshiyuki SUZUKI

    IEICE Magnetic Recording Conference  1999.2 

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    Presentation type:Oral presentation (general)  

    Country:Japan  

  • 薄膜ディスク記録特性に及ぼすヘッドエッジ磁界の影響

    田中輝光, 若宮幸平, 鈴木俊行

    第23回日本応用磁気学会  1999.10 

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    Venue:北九州国際会議場, 北九州市   Country:Japan  

  • 誤差制限学習法を用いたニューラルネットワーク等化の一検討

    若宮幸平, 鈴木俊行

    平成11年度電気関係学会九州支部連合大会  1999.10 

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    Presentation type:Oral presentation (general)  

    Venue:九州工業大学, 北九州市   Country:Japan  

  • 孤立再生波形の重畳に関する一検討

    若宮幸平, 竹永和功, 鈴木俊行

    平成12年度電気関係学会九州支部連合大会  2000.9 

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    Presentation type:Oral presentation (general)  

    Venue:九州産業大学, 福岡市   Country:Japan  

  • 実測孤立再生波形を用いた高密度再生波形の推定限界

    若宮幸平, 鈴木俊行

    電子情報通信学会 磁気記録研究会  2000.12 

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    Presentation type:Oral presentation (general)  

    Venue:愛媛大学, 松山市   Country:Japan  

  • 磁界のスプライン表現を用いた3次元磁気センサシステムの検討

    鏑木時彦, 若宮幸平, 澤田弘太郎, 誉田雅彰

    電子情報通信学会 音声研究会  2002.3 

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    Presentation type:Oral presentation (general)  

    Country:Japan  

  • 3次元磁気センサシステムの位置推定精度の検討

    若宮幸平, 鏑木時彦, 澤田弘太郎, 誉田雅彰

    日本音響学会2002年春季研究発表会  2002.3 

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    Presentation type:Oral presentation (general)  

    Venue:神奈川大学, 横浜市   Country:Japan  

  • 3次元磁気センサシステムにおける推定誤差要因に関する検討

    若宮幸平, 鏑木時彦, 澤田弘太郎, 誉田雅彰, 澤田雅司

    電子情報通信学会 音声研究会  2002.8 

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    Presentation type:Oral presentation (general)  

    Venue:九州芸術工科大学, 福岡市   Country:Japan  

  • 3次元磁気センサシステムの位置推定誤差要因

    若宮幸平, 鏑木時彦, 澤田弘太郎, 誉田雅彰, 澤田雅司

    日本音響学会2002年秋季研究発表会  2002.9 

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    Presentation type:Oral presentation (general)  

    Venue:秋田大学, 秋田市   Country:Japan  

  • Three-dimensional electromagnetic articulograph based on a nonparametric representation of the magnetic field International conference

    Tokihiko KABURAGI, Kohei WAKAMIYA and Masaaki HONDA

    International Conference on Spoken Language Processing  2002.9 

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    Presentation type:Oral presentation (general)  

    Country:United States  

  • 音素別ニューラルネットワークを用いた調音-音響マッピング

    辻拓也, 金智之, 若宮幸平, 鏑木時彦

    電子情報通信学会 音声研究会  2003.9 

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    Presentation type:Oral presentation (general)  

    Venue:静岡大学, 浜松市   Country:Japan  

  • 3次元磁気位置計測における解の収束性

    若宮幸平, 鏑木時彦, 誉田雅彰

    日本音響学会2003年秋季研究発表会  2003.9 

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    Presentation type:Oral presentation (general)  

    Venue:大同工業大学, 名古屋市   Country:Japan  

  • An investigation of the measurement accuracy of the three-dimensional electromagnetic articulography International conference

    Kohei WAKAMIYA, Tokihiko KABURAGI and Masaaki HONDA

    The 6th Internatinal Seminar on Speech Production  2003.12 

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    Presentation type:Oral presentation (general)  

    Country:Australia  

  • 調音運動モデルを用いた声道スペクトルの生成

    金 智之, 若宮 幸平, 鏑木 時彦

    電子情報通信学会 音声研究会  2004.10 

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    Presentation type:Oral presentation (general)  

    Venue:工学院大学, 東京都新宿区   Country:Japan  

  • 音素別ニューラルネットワークを用いた調音-音響マッピング ---パラメータ学習法の検討---

    若宮 幸平, 辻 拓哉, 鏑木 時彦

    電子情報通信学会 音声研究会  2004.10 

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    Presentation type:Oral presentation (general)  

    Venue:工学院大学, 東京都新宿区   Country:Japan  

  • Estimation of the vocal tract spectrum from articulatory movements using phoneme-dependent neural networks International conference

    Kohei WAKAMIYA, Takuya TSUJI and Tokihiko KABURAGI

    International conference on Spoken Langage Processing  2004.10 

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    Presentation type:Oral presentation (general)  

    Country:Korea, Republic of  

  • 3次元磁気センサシステムの評価

    鏑木 時彦, 若宮 幸平, 持田 岳美

    電子通信情報学会 音声研究会  2005.8 

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    Presentation type:Oral presentation (general)  

    Venue:九州大学   Country:Japan  

  • 3次元磁気センサシステムの精度評価

    鏑木 時彦, 若宮 幸平, 持田 岳美

    日本音響学会秋季研究発表会  2005.9 

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    Presentation type:Oral presentation (general)  

    Venue:仙台市   Country:Japan  

  • 粒子法を用いた生体連続体モデルの構築

    福冨 隆朗, 仲田 昌史, 鏑木 時彦, 若宮 幸平

    日本音響学会秋季研究発表会  2007.9 

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    Presentation type:Oral presentation (general)  

    Venue:甲府市   Country:Japan  

  • 粒子法による声帯の連続体モデル

    福冨 隆朗, 仲田 昌史, 鏑木 時彦, 若宮 幸平

    電子通信情報学会 音声研究会  2007.10 

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    Presentation type:Oral presentation (general)  

    Venue:長崎大学   Country:Japan  

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MISC

  • 大規模日本語調音・音声パラレルデータの収集

    @若宮 幸平, #田口 史朗, #渡辺 莉子, @桂田 浩一, @牧野 武彦, @鏑木 時彦

    信学技報   2019.6

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    調音データを用いた自然な音声の合成やサイレントスピーチインタフェース構築等のための基礎的データ として, 日本語調音・音声パラレルデータの収集を行っているので報告する. 現在収集中のデータは, 3次元磁気セン サシステム(3D-EMA)を用いて測定した調音運動データ, 並びに, それと同期した音声信号データ, EGG信号データ, 音素セグメントデータである. 発話者は1名, 発話内容はATR503文と新たに構築した1,298文の日本語音素バランス 文セットの計1,811文, 発話時間は67分, モーラ数は29,611となっている.

  • 三次元磁気センサシステムにおける送信コイルの配置の最適化についての検討

    内田 秀継, 若宮 幸平, 鏑木 時彦

    電子情報通信学会 技術研究報告   2013.11

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    三次元磁気センサシステムでは, 受信コイルから得られる受信信号が送信コイルとの位置関係により定まることを利用し位置推定を行うが, 受信コイルの位置が異なるにもかかわらず受信合がほぼ等しくなる場合, 受信コイルの位置を受信信号から一意に定めることが出来ないという問題が発生する. 本研究では, 送信コイルの配置を最適化することでこの非決定性の問題を解決することを試みた. 測定領域内に受信コイルの位置と傾きに関する多数の標本点を設け, その任意の2点間の受信信号差が最大になるように送信コイル配置を最適化し, 位置推定シミュレーションを行ったところ, 非決定性の問題の緩和が確認された. さらに, その配置をシステムに実装し, 位置推定実験により推定制度を検証した結果, 平均位置誤差0.4mmの精度を得た.

  • 高校生のための音響サイエンスキャンプ ~先進的科学技術体験合宿プログラムによる音響講座入門~

    若宮 幸平, 高田 正幸, 河辺 哲次, 鮫島 俊哉, 中島 祥好, 上田 和夫, 鏑木 時彦

    電子情報通信学会 技術研究報告   2010.6

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  • 粒子法による声帯の連続体モデル

    福冨 隆朗, 仲田 昌史, 鏑木 時彦, 若宮 幸平

    電子情報通信学会 技術研究報告   2007.10

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  • 3次元磁気センサシステムの評価

    鏑木 時彦, 若宮 幸平, 持田 岳美

    電子情報通信学会 技術研究報告   2005.8

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  • 調音運動モデルを用いた声道スペクトルの生成

    金 智之, 若宮 幸平, 鏑木 時彦

    電子情報通信学会技術研究報告   2004.10

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  • 音素別ニューラルネットワークを用いた調音-音響マッピング ---パラメータ学習法の検討---

    若宮 幸平, 辻 拓哉, 鏑木 時彦

    電子情報通信学会技術研究報告   2004.10

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  • 音素別ニューラルネットワークを用いた調音-音響マッピング

    辻拓也, 金智之, 若宮幸平, 鏑木時彦

    電子情報通信学会技術報告   2003.9

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  • 3次元磁気センサシステムにおける推定誤差要因に関する検討

    若宮幸平, 鏑木時彦, 澤田弘太郎, 誉田雅彰, 澤田雅司

    電子情報通信学会技術報告   2002.8

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  • 磁界のスプライン表現を用いた3次元磁気センサシステムの検討

    鏑木時彦, 若宮幸平, 澤田弘太郎, 誉田雅彰

    電子情報通信学会技術研究報告   2002.3

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  • 実測孤立再生波形を用いた高密度再生波形の推定限界

    若宮幸平, 鈴木俊行

    電子情報通信学会技術研究報告   2000.12

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  • Read/Write Track Fringe Widths in Thin Film Disks

    Terumitsu TANAKA, Kohei WAKAMIYA and Toshiyuki SUZUKI

    Technical Report of IEICE   1999.2

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Works

  • Basic study on detection method of magnetic fluse in minute region of magnetic disks

    1997

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  • 磁気ディスク微小領域の磁束検出法に関する研究基礎

    1997

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Industrial property rights

Patent   Number of applications: 2   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

  • 電子情報通信学会

  • 映像情報メディア学会

  • 日本磁気学会

  • 日本音響学会

  • Institute of Electrical and Electronics Engineering

  • International Speech Communication Association

  • 電子情報通信学会

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  • 映像情報メディア学会

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  • 日本音響学会

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  • 日本磁気学会

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  • 日本応用磁気学会

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  • The magnetics society of Japan

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  • The institute of image information and television engineers

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  • The institute of electronics

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  • The institute of electrical and electronics engineers

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  • The acoustical society of Japan

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  • International Speech Communication Association

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  • Institute of Electrical and Electronics Engineering

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  • information and communication engineers

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  • IEEE

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Committee Memberships

  • 九州大学   音響設計学科就職担当  

    2020.10 - 2022.3   

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    Committee type:Other

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  • 九州大学   CDSコース就職担当  

    2020.10 - 2022.3   

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    Committee type:Other

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  • 九州大学   安全衛生委員会委員  

    2020.4 - 2022.3   

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    Committee type:Other

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  • Councilor   Domestic

    2019.4 - 2021.3   

  • 電気関係学会九州支部連合大会   プログラム編集委員   Domestic

    2016.7   

  • Organizer   Domestic

    2016.4 - 2018.3   

  • 電気関係学会九州支部連合会   役員   Domestic

    2004.4 - 2005.3   

  • Organizer   Domestic

    2003.4 - 2005.3   

  • 日本音響学会 九州支部   会計幹事   Domestic

    2003.4 - 2005.3   

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Academic Activities

  • プログラム編集委員

    電気関係学会九州支部連合大会  ( 宮崎 ) 2016.9

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    Type:Competition, symposium, etc. 

    Number of participants:600

  • 実行委員

    音響学会秋季大会  ( 福岡 ) 2008.9

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    Type:Competition, symposium, etc. 

    Number of participants:1,100

  • 役員

    電気関係学会九州支部大会  ( 鹿児島 ) 2004.9

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    Type:Competition, symposium, etc. 

    Number of participants:600

Research Projects

  • Speech training system for the hearing impaired using articulators' motion trajectories

    Grant number:23K02572  2023 - 2025

    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

  • 調音・音声データベースの構築

    2023

    公益財団法人 電気通信普及財団 2022年度研究調査助成

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    Authorship:Principal investigator  Grant type:Contract research

  • 複数の調音運動データを中間情報とするマルチモーダル音声合成

    Grant number:22K12100  2022.4 - 2027.3

    科学研究費助成事業  基盤研究(C)

    桂田 浩一, 若宮 幸平, 牧野 武彦

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    Grant type:Scientific research funding

    人間の発話メカニズムに近い音声生成法を実現するため,複数種類の調音運動データ(発
    話時の舌や唇の動き)を中間情報として用いた「言語⇒調音運動⇒音声」の形のマルチモー
    ダル音声合成システムを開発する.

    CiNii Research

  • Construction of articulatory movement database, normalization of databases, and speech synthesis based on the database

    Grant number:19K12024  2019.4 - 2023.3

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

    Katsurada Kouichi

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    Grant type:Scientific research funding

    We developed (1) a speech synthesis system from EMA data, (2) a speech synthesis system from rtMRI data, and built (3) an articulatory movement database using EMA. The speech synthesis system from EMA data is constructed for multiple speakers using LSTM and D-vector, and we confirmed it can generate sufficient synthesized sounds, especially for speaker-close synthesis. For speech synthesis from rtMRI data, we used transposed convolution which interpolates time series data, and the results showed the quality improved when the stride size is increased. As for articulatory database, we have completed the recording of articulatory movement data for seven persons, and IPA assignment has been completed for one of them.

    CiNii Research

  • 3次元磁気センサシステムを用いた調音観測とその応用に関する研究

    2019 - 2021

    曽田豊二記念財団 研究助成金

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    Authorship:Principal investigator  Grant type:Contract research

  • 高精度3次元磁気センサシステムを用いた調音-音声データベースの構築

    2013

    一般財団法人カワイサウンド技術・音楽振興財団2013年度(平成25年度)研究助成【サウンド技術振興部門】

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    Authorship:Principal investigator  Grant type:Contract research

  • 3次元磁気センサシステムの構築

    2007.9 - 2008.3

    共同研究

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    Authorship:Coinvestigator(s)  Grant type:Other funds from industry-academia collaboration

  • 「こえ」のなかに生きるアジアの身体 〜ヴォーカル・コミュニケーションの生体音響学〜

    2006 - 2008

    トヨタ財団2006年度(平成18年度)研究助成

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    Authorship:Coinvestigator(s)  Grant type:Contract research

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Educational Activities

  • Basically Dynamics and Practice, Design Literacy Basics, Design Case Study I, Acoustics Lab I and II, Electrical Lab, Information Theory, Basic Practice of Design, Information Processing Practice V, Digital Signal Processing Practice, Speech Informatics, Acoustical Programing Practice, Seminar, Special seminar of Acoustic Information Transmission, PBL of Acoustic Information Transmission, Advanced Speech Production

Class subject

  • 音声情報学

    2024.12 - 2025.2   Winter quarter

  • 音響設計特別講話

    2024.10 - 2025.3   Second semester

  • 芸術工学演習(音響設計コース)

    2024.10 - 2025.3   Second semester

  • 芸術工学特別研究Ⅳ(音響設計コース)

    2024.10 - 2025.3   Second semester

  • 芸術工学特別研究Ⅱ(音響設計コース)

    2024.10 - 2025.3   Second semester

  • 卒業研究Ⅱ

    2024.10 - 2025.3   Second semester

  • 卒業研究Ⅰ

    2024.10 - 2025.3   Second semester

  • 音響実験Ⅱ

    2024.10 - 2025.3   Second semester

  • 卒業研究Ⅱ(2019年度以前入学者対象)

    2024.10 - 2025.3   Second semester

  • 卒業研究Ⅰ(2019年度以前入学者対象)

    2024.10 - 2025.3   Second semester

  • 音響プログラミング演習

    2024.6 - 2024.8   Summer quarter

  • 卒業研究Ⅱ(2019年度以前入学者対象)

    2024.4 - 2024.9   First semester

  • 卒業研究Ⅰ(2019年度以前入学者対象)

    2024.4 - 2024.9   First semester

  • 輪講

    2024.4 - 2024.9   First semester

  • 音声生成特論

    2024.4 - 2024.9   First semester

  • 芸術工学特別研究Ⅲ(音響設計コース)

    2024.4 - 2024.9   First semester

  • 芸術工学特別研究Ⅰ(音響設計コース)

    2024.4 - 2024.9   First semester

  • 卒業研究Ⅱ

    2024.4 - 2024.9   First semester

  • 卒業研究Ⅰ

    2024.4 - 2024.9   First semester

  • 電気実験

    2024.4 - 2024.9   First semester

  • 情報理論

    2024.4 - 2024.9   First semester

  • 音響実験Ⅰ(2020年度以降入学者対象)

    2024.4 - 2024.6   Spring quarter

  • 音声情報学

    2023.12 - 2024.2   Winter quarter

  • 卒業研究Ⅱ(2019年度以前入学者対象)

    2023.10 - 2024.3   Second semester

  • 卒業研究Ⅰ(2019年度以前入学者対象)

    2023.10 - 2024.3   Second semester

  • 音響実験Ⅱ

    2023.10 - 2024.3   Second semester

  • 音響設計特別講話

    2023.10 - 2024.3   Second semester

  • 芸術工学演習(音響設計コース)

    2023.10 - 2024.3   Second semester

  • 芸術工学特別研究Ⅳ(音響設計コース)

    2023.10 - 2024.3   Second semester

  • 芸術工学特別研究Ⅱ(音響設計コース)

    2023.10 - 2024.3   Second semester

  • 卒業研究Ⅱ

    2023.10 - 2024.3   Second semester

  • 卒業研究Ⅰ

    2023.10 - 2024.3   Second semester

  • 音響プログラミング演習

    2023.6 - 2023.8   Summer quarter

  • インターンシップ(学部/音響)Ⅰ

    2023.4 - 2024.3   Full year

  • インターンシップ(学部/音響)Ⅱ

    2023.4 - 2024.3   Full year

  • 電気実験

    2023.4 - 2023.9   First semester

  • 情報理論

    2023.4 - 2023.9   First semester

  • 音響実験Ⅰ(2019年度以前入学者対象)

    2023.4 - 2023.9   First semester

  • 卒業研究Ⅱ(2019年度以前入学者対象)

    2023.4 - 2023.9   First semester

  • 卒業研究Ⅰ(2019年度以前入学者対象)

    2023.4 - 2023.9   First semester

  • 輪講

    2023.4 - 2023.9   First semester

  • 卒業研究Ⅰ

    2023.4 - 2023.9   First semester

  • 輪講

    2023.4 - 2023.9   First semester

  • 音声生成特論

    2023.4 - 2023.9   First semester

  • 芸術工学特別研究Ⅲ(音響設計コース)

    2023.4 - 2023.9   First semester

  • 芸術工学特別研究Ⅰ(音響設計コース)

    2023.4 - 2023.9   First semester

  • 音響実験Ⅰ(2020年度以降入学者対象)

    2023.4 - 2023.6   Spring quarter

  • 音声情報学

    2022.12 - 2023.2   Winter quarter

  • 卒業研究Ⅰ

    2022.10 - 2023.3   Second semester

  • 音響設計特別講話

    2022.10 - 2023.3   Second semester

  • 音響実験Ⅱ

    2022.10 - 2023.3   Second semester

  • 卒業研究Ⅱ

    2022.10 - 2023.3   Second semester

  • 音響プログラミング演習

    2022.6 - 2022.8   Summer quarter

  • 輪講

    2022.4 - 2022.9   First semester

  • 輪講

    2022.4 - 2022.9   First semester

  • 音声生成特論

    2022.4 - 2022.9   First semester

  • 電気実験

    2022.4 - 2022.9   First semester

  • 情報理論

    2022.4 - 2022.9   First semester

  • 卒業研究Ⅱ

    2022.4 - 2022.9   First semester

  • 卒業研究Ⅰ

    2022.4 - 2022.9   First semester

  • 音響実験Ⅰ

    2022.4 - 2022.6   Spring quarter

  • 音声情報学

    2021.12 - 2022.2   Winter quarter

  • 音響実験Ⅱ

    2021.10 - 2022.3   Second semester

  • 音響情報伝達PBL

    2021.10 - 2022.3   Second semester

  • 卒業研究Ⅱ

    2021.10 - 2022.3   Second semester

  • 卒業研究Ⅰ

    2021.10 - 2022.3   Second semester

  • デザイン・ケーススタディⅠ

    2021.6 - 2021.8   Summer quarter

  • 音響プログラミング演習

    2021.6 - 2021.8   Summer quarter

  • 情報理論

    2021.4 - 2021.9   First semester

  • 音響情報伝達特論・演習

    2021.4 - 2021.9   First semester

  • 卒業研究Ⅱ

    2021.4 - 2021.9   First semester

  • 卒業研究Ⅰ

    2021.4 - 2021.9   First semester

  • 輪講

    2021.4 - 2021.9   First semester

  • 音響実験Ⅰ

    2021.4 - 2021.9   First semester

  • 電気実験

    2021.4 - 2021.9   First semester

  • 音声学

    2020.10 - 2021.3   Second semester

  • 音響情報伝達PBL

    2020.10 - 2021.3   Second semester

  • 卒業研究Ⅱ

    2020.10 - 2021.3   Second semester

  • 卒業研究Ⅰ

    2020.10 - 2021.3   Second semester

  • 音響実験Ⅱ

    2020.10 - 2021.3   Second semester

  • 情報理論

    2020.4 - 2020.9   First semester

  • 音響情報伝達特論・演習

    2020.4 - 2020.9   First semester

  • 卒業研究Ⅱ

    2020.4 - 2020.9   First semester

  • 卒業研究Ⅰ

    2020.4 - 2020.9   First semester

  • 音響実験Ⅰ

    2020.4 - 2020.9   First semester

  • 電気実験

    2020.4 - 2020.9   First semester

  • 音響情報伝達PBL

    2019.10 - 2020.3   Second semester

  • 音声学

    2019.10 - 2020.3   Second semester

  • 音響情報伝達特論・演習

    2019.4 - 2019.9   First semester

  • 情報理論

    2019.4 - 2019.9   First semester

  • ディジタル信号処理演習

    2019.4 - 2019.9   First semester

  • 電気実験

    2019.4 - 2019.9   First semester

  • 音響実験Ⅰ

    2019.4 - 2019.9   First semester

  • 輪講

    2019.4 - 2019.9   First semester

  • 音響情報伝達PBL

    2018.10 - 2019.3   Second semester

  • 音響実験II

    2018.10 - 2019.3   Second semester

  • 卒業研究I

    2018.10 - 2019.3   Second semester

  • 卒業研究II

    2018.10 - 2019.3   Second semester

  • 音響実験Ⅰ

    2018.4 - 2018.9   First semester

  • 音響実験Ⅰ

    2018.4 - 2018.9   First semester

  • 輪講

    2018.4 - 2018.9   First semester

  • 卒業研究I

    2018.4 - 2018.9   First semester

  • 卒業研究II

    2018.4 - 2018.9   First semester

  • 情報理論

    2018.4 - 2018.9   First semester

  • ディジタル信号処理演習

    2018.4 - 2018.9   First semester

  • 電気実験

    2018.4 - 2018.9   First semester

  • 音響情報伝達特論・演習

    2018.4 - 2018.9   First semester

  • コミュニケーションデザイン科学特別演習Ⅱ

    2017.10 - 2018.3   Second semester

  • 卒業研究II

    2017.10 - 2018.3   Second semester

  • 卒業研究I

    2017.10 - 2018.3   Second semester

  • 音響実験II

    2017.10 - 2018.3   Second semester

  • 音響情報伝達PBL

    2017.10 - 2018.3   Second semester

  • 音響情報伝達特論・演習

    2017.4 - 2017.9   First semester

  • 卒業研究II

    2017.4 - 2017.9   First semester

  • 卒業研究I

    2017.4 - 2017.9   First semester

  • 情報理論

    2017.4 - 2017.9   First semester

  • ディジタル信号処理演習

    2017.4 - 2017.9   First semester

  • 電気実験

    2017.4 - 2017.9   First semester

  • 音響実験Ⅰ

    2017.4 - 2017.9   First semester

  • 音響情報伝達PBL

    2016.10 - 2017.3   Second semester

  • 卒業研究II

    2016.10 - 2017.3   Second semester

  • 卒業研究I

    2016.10 - 2017.3   Second semester

  • 音響実験II

    2016.10 - 2017.3   Second semester

  • 電気実験

    2016.4 - 2016.9   First semester

  • 情報理論

    2016.4 - 2016.9   First semester

  • 卒業研究II

    2016.4 - 2016.9   First semester

  • 卒業研究I

    2016.4 - 2016.9   First semester

  • 輪講

    2016.4 - 2016.9   First semester

  • 音響情報伝達特論・演習

    2016.4 - 2016.9   First semester

  • 音響実験I

    2016.4 - 2016.9   First semester

  • 音響情報伝達PBL

    2015.10 - 2016.3   Second semester

  • 卒業研究II

    2015.10 - 2016.3   Second semester

  • 卒業研究I

    2015.10 - 2016.3   Second semester

  • 音響実験II

    2015.10 - 2016.3   Second semester

  • 電気実験

    2015.4 - 2015.9   First semester

  • 情報理論

    2015.4 - 2015.9   First semester

  • 卒業研究II

    2015.4 - 2015.9   First semester

  • 卒業研究I

    2015.4 - 2015.9   First semester

  • 輪講

    2015.4 - 2015.9   First semester

  • 音響情報伝達特論・演習

    2015.4 - 2015.9   First semester

  • 音響実験I

    2015.4 - 2015.9   First semester

  • 音響情報伝達PBL

    2014.10 - 2015.3   Second semester

  • 卒業研究II

    2014.10 - 2015.3   Second semester

  • 卒業研究I

    2014.10 - 2015.3   Second semester

  • 音響実験II

    2014.10 - 2015.3   Second semester

  • 電気実験

    2014.4 - 2014.9   First semester

  • 情報理論

    2014.4 - 2014.9   First semester

  • 卒業研究II

    2014.4 - 2014.9   First semester

  • 卒業研究I

    2014.4 - 2014.9   First semester

  • 輪講

    2014.4 - 2014.9   First semester

  • 音響情報伝達特論・演習

    2014.4 - 2014.9   First semester

  • 音響実験I

    2014.4 - 2014.9   First semester

  • 音響情報伝達PBL

    2013.10 - 2014.3   Second semester

  • 卒業研究II

    2013.10 - 2014.3   Second semester

  • 卒業研究I

    2013.10 - 2014.3   Second semester

  • 音響実験II

    2013.10 - 2014.3   Second semester

  • 情報処理演習V

    2013.4 - 2013.9   First semester

  • 情報理論

    2013.4 - 2013.9   First semester

  • 力学基礎・同演習

    2013.4 - 2013.9   First semester

  • 卒業研究II

    2013.4 - 2013.9   First semester

  • 卒業研究I

    2013.4 - 2013.9   First semester

  • 輪講

    2013.4 - 2013.9   First semester

  • 音響情報伝達特論・演習

    2013.4 - 2013.9   First semester

  • 音響実験I

    2013.4 - 2013.9   First semester

  • 芸術工学基礎演習

    2013.4 - 2013.9   First semester

  • 電気実験

    2013.4 - 2013.9   First semester

  • 音響情報伝達PBL

    2012.10 - 2013.3   Second semester

  • 卒業研究II

    2012.10 - 2013.3   Second semester

  • 卒業研究I

    2012.10 - 2013.3   Second semester

  • 音響実験II

    2012.10 - 2013.3   Second semester

  • 情報処理演習V

    2012.4 - 2012.9   First semester

  • 力学基礎・同演習

    2012.4 - 2012.9   First semester

  • 卒業研究II

    2012.4 - 2012.9   First semester

  • 卒業研究I

    2012.4 - 2012.9   First semester

  • 輪講

    2012.4 - 2012.9   First semester

  • 音響情報伝達特論・演習

    2012.4 - 2012.9   First semester

  • 音響実験I

    2012.4 - 2012.9   First semester

  • 芸術工学基礎演習

    2012.4 - 2012.9   First semester

  • 電気実験

    2012.4 - 2012.9   First semester

  • 音響情報伝達PBL

    2011.10 - 2012.3   Second semester

  • 卒業研究II

    2011.10 - 2012.3   Second semester

  • 卒業研究I

    2011.10 - 2012.3   Second semester

  • 音響実験II

    2011.10 - 2012.3   Second semester

  • 情報処理演習V

    2011.4 - 2011.9   First semester

  • 卒業研究II

    2011.4 - 2011.9   First semester

  • 卒業研究I

    2011.4 - 2011.9   First semester

  • 輪講

    2011.4 - 2011.9   First semester

  • 音響情報伝達特論・演習

    2011.4 - 2011.9   First semester

  • 音響実験I

    2011.4 - 2011.9   First semester

  • 芸術工学基礎演習

    2011.4 - 2011.9   First semester

  • 電気実験

    2011.4 - 2011.9   First semester

  • 卒業研究I

    2010.10 - 2011.3   Second semester

  • 音響情報伝達PBL

    2010.10 - 2011.3   Second semester

  • 音響実験II

    2010.10 - 2011.3   Second semester

  • 卒業研究II

    2010.10 - 2011.3   Second semester

  • 情報処理演習V

    2010.4 - 2010.9   First semester

  • 電気実験

    2010.4 - 2010.9   First semester

  • 芸術工学基礎演習

    2010.4 - 2010.9   First semester

  • 音響実験I

    2010.4 - 2010.9   First semester

  • 音響情報伝達特論・演習

    2010.4 - 2010.9   First semester

  • 輪講

    2010.4 - 2010.9   First semester

  • 卒業研究II

    2010.4 - 2010.9   First semester

  • 卒業研究I

    2010.4 - 2010.9   First semester

  • 音響情報伝達PBL

    2009.10 - 2010.3   Second semester

  • 卒業研究II

    2009.10 - 2010.3   Second semester

  • 音響実験II

    2009.10 - 2010.3   Second semester

  • 卒業研究I

    2009.10 - 2010.3   Second semester

  • 電気実験

    2009.4 - 2009.9   First semester

  • 卒業研究I

    2009.4 - 2009.9   First semester

  • 輪講

    2009.4 - 2009.9   First semester

  • 音響情報伝達特論・演習

    2009.4 - 2009.9   First semester

  • 音響実験I

    2009.4 - 2009.9   First semester

  • 芸術工学基礎演習

    2009.4 - 2009.9   First semester

  • 情報処理演習V

    2009.4 - 2009.9   First semester

  • 音響実験II

    2008.10 - 2009.3   Second semester

  • 音響情報伝達PBL

    2008.10 - 2009.3   Second semester

  • 電気実験II

    2008.10 - 2009.3   Second semester

  • 卒業研究

    2008.4 - 2009.3   Full year

  • 輪講

    2008.4 - 2008.9   First semester

  • 電気実験

    2008.4 - 2008.9   First semester

  • 芸術工学基礎演習

    2008.4 - 2008.9   First semester

  • 電気実験I

    2008.4 - 2008.9   First semester

  • 音響実験I

    2008.4 - 2008.9   First semester

  • 音響情報伝達特論・演習

    2008.4 - 2008.9   First semester

  • 音響実験II

    2007.10 - 2008.3   Second semester

  • 電気実験II

    2007.10 - 2008.3   Second semester

  • 卒業研究

    2007.4 - 2008.3   Full year

  • 輪講

    2007.4 - 2007.9   First semester

  • 芸術工学基礎演習

    2007.4 - 2007.9   First semester

  • 電気実験I

    2007.4 - 2007.9   First semester

  • 音響実験I

    2007.4 - 2007.9   First semester

  • 音響情報学特論演習I

    2007.4 - 2007.9   First semester

  • 音響実験II

    2006.10 - 2007.3   Second semester

  • 電気実験II

    2006.10 - 2007.3   Second semester

  • 卒業研究

    2006.4 - 2007.3   Full year

  • 輪講

    2006.4 - 2006.9   First semester

  • 電気実験I

    2006.4 - 2006.9   First semester

  • 音響実験I

    2006.4 - 2006.9   First semester

  • 音響情報学特論演習I

    2006.4 - 2006.9   First semester

  • 電気実験II

    2005.10 - 2006.3   Second semester

  • 音響実験II

    2005.10 - 2006.3   Second semester

  • 卒業研究

    2005.4 - 2006.3   Full year

  • 電気実験I

    2005.4 - 2005.9   First semester

  • 輪講

    2005.4 - 2005.9   First semester

  • 音響情報学特論演習I

    2005.4 - 2005.9   First semester

  • 音響実験I

    2005.4 - 2005.9   First semester

  • 音響実験II

    2004.10 - 2005.3   Second semester

  • 電気実験II

    2004.10 - 2005.3   Second semester

  • 卒業研究

    2004.4 - 2005.3   Full year

  • 電気実験I

    2004.4 - 2004.9   First semester

  • 輪講

    2004.4 - 2004.9   First semester

  • 音響情報学特論演習I

    2004.4 - 2004.9   First semester

  • 音響実験I

    2004.4 - 2004.9   First semester

  • 音響実験II

    2003.10 - 2004.3   Second semester

  • 外書講読B

    2003.10 - 2004.3   Second semester

  • 卒業研究

    2003.4 - 2004.3   Full year

  • 音響実験I

    2003.4 - 2003.9   First semester

  • 輪講

    2003.4 - 2003.9   First semester

  • 音響情報学特論演習I

    2003.4 - 2003.9   First semester

  • 音響実験II

    2002.10 - 2003.3   Second semester

  • 外書講読B

    2002.10 - 2003.3   Second semester

  • 卒業研究

    2002.4 - 2003.3   Full year

  • 音響実験I

    2002.4 - 2002.9   First semester

  • 輪講

    2002.4 - 2002.9   First semester

  • 音響情報学特論演習I

    2002.4 - 2002.9   First semester

▼display all

FD Participation

  • 2022.2   Role:Participation   Title:インストラクショナルデザイン:教務システム(特にシラバス)と学修効果/学びの質保障の関係

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

  • 2020.9   Role:Participation   Title:M2B学習支援システム講習会

    Organizer:University-wide

  • 2020.2   Role:Participation   Title:多様性を包摂する社会のためにデザインができること

    Organizer:University-wide

  • 2017.2   Role:Participation   Title:大学における自殺予防―ゲートキーパーとしての教職員の役割―

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

  • 2017.2   Role:Participation   Title:障害者支援に係るファカルティ・ディベロップメント

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

  • 2017.2   Role:Participation   Title:英語で授業を行う際の注意点

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

  • 2015.11   Role:Participation   Title:自殺防止メンタルヘルス研修会

    Organizer:University-wide

  • 2014.12   Role:Participation   Title:FD研究会:「ルーブリックの作成について」

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

  • 2014.8   Role:Participation   Title:改定したGPA制度の実施のためのFD

    Organizer:University-wide

  • 2014.3   Role:Participation   Title:FD研究会

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

  • 2011.11   Role:Participation   Title:FD研究会

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

  • 2010.10   Role:Participation   Title:FD研究会

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

  • 2009.11   Role:Participation   Title:FD研究会

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

  • 2009.3   Role:Participation   Title:教育改革研究会

    Organizer:University-wide

  • 2008.12   Role:Participation   Title:FD研究会

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

  • 2007.4   Role:Participation   Title:平成19年度第1回全学FD

    Organizer:University-wide

  • 2006.9   Role:Participation   Title:FD研究会:「学術英語」の現状について

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

  • 2004.5   Role:Participation   Title:FD研究会

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

▼display all

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

  • 2017  九州産業大学・工学部  Classification:Part-time lecturer  Domestic/International Classification:Japan 

    Semester, Day Time or Duration:後学期, 木曜4, 5限

  • 2016  九州産業大学・工学部  Classification:Part-time lecturer  Domestic/International Classification:Japan 

    Semester, Day Time or Duration:後学期, 木曜4, 5限

Other educational activity and Special note

  • 2023  Class Teacher 

  • 2022  Class Teacher 

  • 2021  Class Teacher 

  • 2021  Class Teacher 

  • 2018  Coaching of Students' Association 

  • 2017  Coaching of Students' Association 

  • 2016  Coaching of Students' Association 

  • 2015  Coaching of Students' Association 

  • 2014  Coaching of Students' Association 

  • 2013  Class Teacher 

  • 2013  Coaching of Students' Association 

  • 2012  Class Teacher 

  • 2012  Coaching of Students' Association 

  • 2011  Class Teacher 

  • 2011  Class Teacher 

  • 2011  Coaching of Students' Association 

  • 2010  Class Teacher 

  • 2010  Class Teacher 

  • 2010  Coaching of Students' Association 

  • 2009  Coaching of Students' Association 

  • 2009  Coaching of Students' Association 

  • 2008  Coaching of Students' Association 

  • 2008  Coaching of Students' Association 

  • 2007  Coaching of Students' Association 

  • 2007  Coaching of Students' Association 

  • 2006  Coaching of Students' Association 

  • 2006  Coaching of Students' Association 

  • 2005  Coaching of Students' Association 

  • 2004  Coaching of Students' Association 

  • 2004  Coaching of Students' Association 

  • 2003  Coaching of Students' Association 

  • 2003  Coaching of Students' Association 

▼display all

Outline of Social Contribution and International Cooperation activities

  • A Japanese Scholarship Association interview committee(1999).

Social Activities

  • 公開講座『高校生のための音の実験』/高校生に対し, 音の分野の実験についてのレクチャーを行い, 音響設計に興味を持ってもらうための講座.

    2022.8

     More details

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

    Type:Seminar, workshop

  • 公開講座『高校生のための音の実験』/高校生に対し, 音の分野の実験についてのレクチャーを行い, 音響設計に興味を持ってもらうための講座.

    2021.8

     More details

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

    Type:Seminar, workshop

  • 公開講座『高校生のための音の実験』/高校生に対し, 音の分野の実験についてのレクチャーを行い, 音響設計に興味を持ってもらうための講座.

    2020.8

     More details

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

    Type:Seminar, workshop

  • 公開講座『高校生のための音の実験』/高校生に対し, 音の分野の実験についてのレクチャーを行い, 音響設計に興味を持ってもらうための講座.

    2020.8

     More details

    Type:Seminar, workshop

    researchmap

  • 芸術工学部オープンキャンパス

    九州大学芸術工学部  九州大学芸術工学部  2019.8

     More details

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

    Type:Other

    オープンキャンパスにおいて, 学科受付担当.

  • 公開講座『高校生のための音の実験』/高校生に対し, 音の分野の実験についてのレクチャーを行い, 音響設計に興味を持ってもらうための講座.

    2019.8

     More details

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

    Type:Seminar, workshop

  • 公開講座『高校生のための音の実験』/高校生に対し, 音の分野の実験についてのレクチャーを行い, 音響設計に興味を持ってもらうための講座.

    2019.8

     More details

    Type:Seminar, workshop

    researchmap

  • 芸術工学部オープンキャンパス

    九州大学芸術工学部  九州大学芸術工学部  2019.8

     More details

    Type:Other

    オープンキャンパスにおいて, 学科受付担当.

    researchmap

  • 芸術工学部施設公開事業

    九州大学芸術工学部  九州大学芸術工学部  2019.5

     More details

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

    Type:Other

    施設公開事業にて「音声の仕組みを探る」というテーマで展示

  • 芸術工学部施設公開事業

    九州大学芸術工学部  九州大学芸術工学部  2019.5

     More details

    Type:Other

    施設公開事業にて「音声の仕組みを探る」というテーマで展示

    researchmap

  • 芸術工学部オープンキャンパス

    九州大学芸術工学部  九州大学芸術工学部  2018.8

     More details

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

    Type:Other

    オープンキャンパスにおいて, 学科受付担当.

  • 公開講座『高校生のための音と画像の実験』/高校生に対し, 音と画像の分野の実験についてのレクチャーを行い, 音響設計や画像設計に興味を持ってもらうための講座.

    2018.8

     More details

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

    Type:Seminar, workshop

  • 公開講座『高校生のための音と画像の実験』/高校生に対し, 音と画像の分野の実験についてのレクチャーを行い, 音響設計や画像設計に興味を持ってもらうための講座.

    2018.8

     More details

    Type:Seminar, workshop

    researchmap

  • 芸術工学部オープンキャンパス

    九州大学芸術工学部  九州大学芸術工学部  2018.8

     More details

    Type:Other

    オープンキャンパスにおいて, 学科受付担当.

    researchmap

  • 芸術工学部施設公開事業

    九州大学芸術工学部  九州大学芸術工学部  2018.6

     More details

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

    Type:Other

    施設公開事業にて「音声の仕組みを探る」というテーマで展示

  • 芸術工学部施設公開事業

    九州大学芸術工学部  九州大学芸術工学部  2018.6

     More details

    Type:Other

    施設公開事業にて「音声の仕組みを探る」というテーマで展示

    researchmap

  • 芸術工学部オープンキャンパス

    九州大学芸術工学部  九州大学芸術工学部  2017.8

     More details

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

    Type:Other

    オープンキャンパスにおいて, 学科受付担当.

  • 公開講座『高校生のための音と画像の実験』/高校生に対し, 音と画像の分野の実験についてのレクチャーを行い, 音響設計や画像設計に興味を持ってもらうための講座.

    2017.8

     More details

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

    Type:Seminar, workshop

  • 公開講座『高校生のための音と画像の実験』/高校生に対し, 音と画像の分野の実験についてのレクチャーを行い, 音響設計や画像設計に興味を持ってもらうための講座.

    2017.8

     More details

    Type:Seminar, workshop

    researchmap

  • 芸術工学部オープンキャンパス

    九州大学芸術工学部  九州大学芸術工学部  2017.8

     More details

    Type:Other

    オープンキャンパスにおいて, 学科受付担当.

    researchmap

  • 福岡教育大学付属福岡中学校の総合的な学習の時間「フロンティアタイム」の「一日校外探究活動」において, 探究活動を支援した.

    2017.7

     More details

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

    Type:Other

  • 福岡教育大学付属福岡中学校の総合的な学習の時間「フロンティアタイム」の「一日校外探究活動」において, 探究活動を支援した.

    2017.7

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    Type:Other

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  • 芸術工学部施設公開事業

    九州大学芸術工学部  九州大学芸術工学部  2017.5

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

    Type:Other

    施設公開事業にて「音声の仕組みを探る」というテーマで展示

  • 芸術工学部施設公開事業

    九州大学芸術工学部  九州大学芸術工学部  2017.5

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    Type:Other

    施設公開事業にて「音声の仕組みを探る」というテーマで展示

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  • 公開講座『高校生のための音と画像の実験』/高校生に対し, 音と画像の分野の実験についてのレクチャーを行い, 音響設計や画像設計に興味を持ってもらうための講座.

    2016.8

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

    Type:Seminar, workshop

  • 公開講座『高校生のための音と画像の実験』/高校生に対し, 音と画像の分野の実験についてのレクチャーを行い, 音響設計や画像設計に興味を持ってもらうための講座.

    2016.8

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    Type:Seminar, workshop

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  • 芸術工学部オープンキャンパス

    九州大学芸術工学部  九州大学芸術工学部  2016.7

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

    Type:Other

    オープンキャンパスにおいて, 学科受付担当.

  • 福岡教育大学付属福岡中学校の総合的な学習の時間「フロンティアタイム」の「一日校外探究活動」において, 探究活動を支援した.

    2016.7

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

    Type:Other

  • 福岡教育大学付属福岡中学校の総合的な学習の時間「フロンティアタイム」の「一日校外探究活動」において, 探究活動を支援した.

    2016.7

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    Type:Other

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  • 芸術工学部オープンキャンパス

    九州大学芸術工学部  九州大学芸術工学部  2016.7

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    Type:Other

    オープンキャンパスにおいて, 学科受付担当.

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  • 芸術工学部施設公開事業

    九州大学芸術工学部  九州大学芸術工学部  2016.5

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

    Type:Other

    施設公開事業にてWG委員として活動.

  • 芸術工学部施設公開事業

    九州大学芸術工学部  九州大学芸術工学部  2016.5

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    Type:Other

    施設公開事業にてWG委員として活動.

    researchmap

  • 公開講座『高校生のための音と画像の実験』/高校生に対し, 音と画像の分野の実験についてのレクチャーを行い, 音響設計や画像設計に興味を持ってもらうための講座.

    2015.8

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

    Type:Seminar, workshop

  • 公開講座『高校生のための音と画像の実験』/高校生に対し, 音と画像の分野の実験についてのレクチャーを行い, 音響設計や画像設計に興味を持ってもらうための講座.

    2015.8

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    Type:Seminar, workshop

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  • 芸術工学部施設公開事業

    九州大学芸術工学部  九州大学芸術工学部  2015.5

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

    Type:Other

    施設公開事業にてWG委員として活動.

  • 芸術工学部施設公開事業

    九州大学芸術工学部  九州大学芸術工学部  2015.5

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    Type:Other

    施設公開事業にてWG委員として活動.

    researchmap

  • 福岡教育大学付属福岡中学校の総合的な学習の時間「フロンティアタイム」の「一日校外探究活動」において, 探究活動を支援した.

    2014.7

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

    Type:Other

  • 福岡教育大学付属福岡中学校の総合的な学習の時間「フロンティアタイム」の「一日校外探究活動」において, 探究活動を支援した.

    2014.7

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    Type:Other

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  • 芸術工学部施設公開事業

    九州大学芸術工学部  九州大学芸術工学部  2014.5

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

    Type:Other

    施設公開事業にてWG委員として活動.

  • 芸術工学部施設公開事業

    九州大学芸術工学部  九州大学芸術工学部  2014.5

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    Type:Other

    施設公開事業にてWG委員として活動.

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  • スプリング・サイエンスキャンプ 「音」を科学する ~音声の分析と合成を体験してみよう~ / 高校生を対象に音の物理から話を起こして, 音響心理学, 音声の分析, 合成までの講義をキャンプ形式で行うことによって, 高校生に音響学の一端を紹介する.

    独立行政法人 科学技術振興機構(主催), 会場 九州大学大橋キャンパス  2014.3

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

    Type:Seminar, workshop

  • スプリング・サイエンスキャンプ 「音」を科学する ~音声の分析と合成を体験してみよう~ / 高校生を対象に音の物理から話を起こして, 音響心理学, 音声の分析, 合成までの講義をキャンプ形式で行うことによって, 高校生に音響学の一端を紹介する.

    独立行政法人 科学技術振興機構(主催), 会場 九州大学大橋キャンパス  2014.3

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    Type:Seminar, workshop

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  • 芸術工学部施設公開事業

    九州大学芸術工学部  九州大学芸術工学部  2013.5

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

    Type:Other

    施設公開事業にてWG委員として活動.

  • 芸術工学部施設公開事業

    九州大学芸術工学部  九州大学芸術工学部  2013.5

     More details

    Type:Other

    施設公開事業にてWG委員として活動.

    researchmap

  • スプリング・サイエンスキャンプ 「音」を科学する ~音声の分析と合成を体験してみよう~ / 高校生を対象に音の物理から話を起こして, 音響心理学, 音声の分析, 合成までの講義をキャンプ形式で行うことによって, 高校生に音響学の一端を紹介する.

    独立行政法人 科学技術振興機構(主催), 会場 九州大学大橋キャンパス  2013.3

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

    Type:Seminar, workshop

  • スプリング・サイエンスキャンプ 「音」を科学する ~音声の分析と合成を体験してみよう~ / 高校生を対象に音の物理から話を起こして, 音響心理学, 音声の分析, 合成までの講義をキャンプ形式で行うことによって, 高校生に音響学の一端を紹介する.

    独立行政法人 科学技術振興機構(主催), 会場 九州大学大橋キャンパス  2013.3

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    Type:Seminar, workshop

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  • 芸術工学部施設公開事業

    九州大学芸術工学部  九州大学芸術工学部  2012.5

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

    Type:Other

    施設公開事業にてWG委員として活動.

  • 芸術工学部施設公開事業

    九州大学芸術工学部  九州大学芸術工学部  2012.5

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    Type:Other

    施設公開事業にてWG委員として活動.

    researchmap

  • スプリング・サイエンスキャンプ 「音」を科学する ~音声の分析と合成を体験してみよう~ / 高校生を対象に音の物理から話を起こして, 音響心理学, 音声の分析, 合成までの講義をキャンプ形式で行うことによって, 高校生に音響学の一端を紹介する.

    独立行政法人 科学技術振興機構(主催), 会場 九州大学大橋キャンパス  2012.3

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

    Type:Seminar, workshop

  • スプリング・サイエンスキャンプ 「音」を科学する ~音声の分析と合成を体験してみよう~ / 高校生を対象に音の物理から話を起こして, 音響心理学, 音声の分析, 合成までの講義をキャンプ形式で行うことによって, 高校生に音響学の一端を紹介する.

    独立行政法人 科学技術振興機構(主催), 会場 九州大学大橋キャンパス  2012.3

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    Type:Seminar, workshop

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  • スプリング・サイエンスキャンプ 「音」を科学する ~音声の分析と合成を体験してみよう~ / 高校生を対象に音の物理から話を起こして, 音響心理学, 音声の分析, 合成までの講義をキャンプ形式で行うことによって, 高校生に音響学の一端を紹介する.

    独立行政法人 科学技術振興機構(主催), 会場 九州大学大橋キャンパス  2011.3

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

    Type:Seminar, workshop

  • スプリング・サイエンスキャンプ 「音」を科学する ~音声の分析と合成を体験してみよう~ / 高校生を対象に音の物理から話を起こして, 音響心理学, 音声の分析, 合成までの講義をキャンプ形式で行うことによって, 高校生に音響学の一端を紹介する.

    独立行政法人 科学技術振興機構(主催), 会場 九州大学大橋キャンパス  2011.3

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    Type:Seminar, workshop

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  • スプリング・サイエンスキャンプ 「音」を科学する ~音声の分析と合成を体験してみよう~ / 高校生を対象に音の物理から話を起こして, 音響心理学, 音声の分析, 合成までの講義をキャンプ形式で行うことによって, 高校生に音響学の一端を紹介する.

    独立行政法人 科学技術振興機構(主催), 会場 九州大学大橋キャンパス  2010.3

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

    Type:Seminar, workshop

  • スプリング・サイエンスキャンプ 「音」を科学する ~音声の分析と合成を体験してみよう~ / 高校生を対象に音の物理から話を起こして, 音響心理学, 音声の分析, 合成までの講義をキャンプ形式で行うことによって, 高校生に音響学の一端を紹介する.

    独立行政法人 科学技術振興機構(主催), 会場 九州大学大橋キャンパス  2010.3

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    Type:Seminar, workshop

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  • 佐賀県立宇宙科学博物館 平成15年度春の企画展「音」〜音の響とテクノロジー〜 の展示・体験コーディネート (平成15年2月22日〜4月20日開催)

    2002

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    佐賀県立宇宙科学博物館 平成15年度春の企画展「音」〜音の響とテクノロジー〜 の展示・体験コーディネート
    (平成15年2月22日〜4月20日開催)

  • 佐賀県立宇宙科学博物館 平成15年度春の企画展「音」〜音の響とテクノロジー〜 の展示・体験コーディネート (平成15年2月22日〜4月20日開催)

    2002

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    Type:Other

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Travel Abroad

  • 2017.2

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

  • 2014.9

    Staying countory name 1:Singapore   Staying institution name 1:Max Atria at Singapore EXPO

  • 2003.12

    Staying countory name 1:Australia   Staying institution name 1:International courage of Tourism and Hotel management