Kyushu University Academic Staff Educational and Research Activities Database
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Naoya Kozono Last modified date:2024.04.15





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Homepage
https://kyushu-u.elsevierpure.com/en/persons/naoya-kozono
 Reseacher Profiling Tool Kyushu University Pure
Phone
092-642-5488
Fax
092-642-5507
Academic Degree
MD, PhD
Field of Specialization
Shoulder Surgery, Hand Surgery, Elbow Surgery, Microsurgery
Research
Research Interests
  • 3D kinematic analysis of reverse shoulder arthroplasty using 3D simulation
    keyword : Zedshoulder, 3D simulation
    2022.04.
  • 3D kinematic analysis of total shoulder arthroplasty using image-matching technique
    keyword : Total shoulder arthroplasty, Reverse shoulder arthroplasty, Rotator cuff tear , Osteoarthritis of the shoulder, 3D kinematic analysis
    2019.04.
  • Biomechanical study of flexor tendon repair using cyclic loading test
    keyword : Flexor tendon, Core suture, Cyclic loading test
    2014.04.
  • 3D kinematic analysis of normal shoulder and rotator cuff tear shoulder
    keyword : Normal shoulder, Rotator cuff tear , 3D kinematic analysis
    2014.04.
Academic Activities
Papers
1. Senju T, Takeuchi N, Kozono N, Higaki H, Shimoto T, Nakashima Y, Biomechanical Comparison of a Horizontal Mattress, Cross Suture and Vertical Mattress for Repair of a Tendon Weave in a Porcine Model., J Hand Surg Asian Pac Vol, https://doi.org/10.1142/S2424835522500436, 27, 3, 439-446, 2022.06.
2. Tashiro E, Takeuchi N, Kozono N, Nabeshima A, Teshima E, Nakashima Y, Risk of penetration of the baseplate peg in reverse total shoulder arthroplasty for an Asian population., Int Orthop, https://doi.org/10.1007/s00264-022-05328-x, 46, 5, 1063-1071, 2022.05.
3. Takeuchi N, Kozono N, Nishii A, Matsuura K, Ishitani E, Onizuka T, Zaitsu Y, Okada T, Mizuki Y, Kimura T, Yuge H, Uchimura T, Iura K, Mori T, Ueda K, Miake G, Senju T, Takagishi K, Nakashima Y, Stump classification was correlated with retear in the suture-bridge and double-row repair techniques for arthroscopic rotator cuff repair., Knee Surg Sports Traumatol Arthrosc, https://doi.org/10.1007/s00167-020-06415-5, 29, 8, 2587-2594, 2021.08.
4. Kozono N, Takeuchi N, Okada T, Hamai S, Higaki H, Shimoto T, Ikebe S, Gondo H, Senju T, Nakashima Y, Dynamic scapulohumeral rhythm: Comparison between healthy shoulders and those with large or massive rotator cuff tear., J Orthop Surg (Hong Kong), https://doi.org/10.1177/2309499020981779, 28, 3, 2309499020981779, 2020.12.
5. Senju T, Okada T, Takeuchi N, Kozono N, Nakanishi Y, Higaki H, Shimoto T, Nakashima Y, Biomechanical analysis of four different medial row configurations of suture bridge rotator cuff repair., Clin Biomech (Bristol, Avon), https://doi.org/10.1016/j.clinbiomech.2019.07.015, 69, 191-196, 2019.10.
6. Nakanishi Y, Okada T, Takeuchi N, Kozono N, Senju T, Nakayama K, Nakashima Y, Histological evaluation of tendon formation using a scaffold-free three-dimensional-bioprinted construct of human dermal fibroblasts under in vitro static tensile culture., Regen Ther, https://doi.org/10.1016/j.reth.2019.02.002, 11, 47-55, 2019.05.
7. Okada T, Yuge H, Kamitani T, Senju T, Takeuchi N, Sagiyama K, Kozono N, Nakanishi Y, Honda H, Nakashima Y, Evaluation of humeral head cartilage using magnetic resonance imaging T1 rho mapping for patients with small-to-medium rotator cuff tears: A pilot study., J Orthop Sci, https://doi.org/10.1016/j.jos.2018.10.002, 24, 2, 258-262, 2019.03.
8. Kozono N, Okada T, Takeuchi N, Hamai S, Higaki H, Shimoto T, Ikebe S, Gondo H, Nakanishi Y, Senju T, Nakashima Y, In vivo dynamic acromiohumeral distance in shoulders with rotator cuff tears., Clin Biomech (Bristol, Avon), https://doi.org/10.1016/j.clinbiomech.2018.07.017, 60, 95-99, 2018.12.
9. Kozono N, Okada T, Takeuchi N, Hamai S, Higaki H, Shimoto T, Ikebe S, Gondo H, Nakanishi Y, Senju T, Nakashima Y, Dynamic kinematics of the glenohumeral joint in shoulders with rotator cuff tears., J Orthop Surg Res, https://doi.org/10.1186/s13018-017-0709-6, 13, 1, 9, 2018.01.
10. Kozono N, Okada T, Takeuchi N, Shimoto T, Higaki H, Nakashima Y, A Biomechanical Comparison Between Asymmetric Pennington Technique and Conventional Core Suture Techniques: 6-Strand Flexor Tendon Repair., J Hand Surg Am, https://doi.org/10.1016/j.jhsa.2017.06.104, 43, 1, 79.e1-79.e8, 2018.01.
11. Takeuchi N, Okada T, Kozono N, Shimoto T, Higaki H, Iwamoto Y, Symmetric Peripheral Running Sutures are Superior to Asymmetric Peripheral Running Sutures for Increasing the Tendon Strength in Flexor Tendon Repair., J Hand Surg Asian Pac Vol, https://doi.org/10.1142/S0218810417500265, 22, 2, 208-213, 2017.06.
12. Kozono N, Okada T, Takeuchi N, Shimoto T, Higaki H, Nakashima Y, Effect of the Optimal Asymmetry on the Strength of Six-Strand Tendon Repair: An Ex Vivo Biomechanical Study., J Hand Surg Am, https://doi.org/10.1016/j.jhsa.2017.01.015, 42, 4, 250-256, 2017.04.
13. Kozono N, Okada T, Takeuchi N, Hamai S, Higaki H, Ikebe S, Shimoto T, Miake G, Nakanishi Y, Iwamoto Y, In vivo kinematic analysis of the glenohumeral joint during dynamic full axial rotation and scapular plane full abduction in healthy shoulders., Knee Surg Sports Traumatol Arthrosc, https://doi.org/10.1007/s00167-016-4263-2, 25, 7, 2032-2040, 2017.07.
14. Kozono N, Okada T, Takeuchi N, Hanada M, Shimoto T, Iwamoto Y, Asymmetric six-strand core sutures enhance tendon fatigue strength and the optimal asymmetry., J Hand Surg Eur Vol, https://doi.org/10.1177/1753193416631454, 41, 8, 802-808, 2016.10.
15. Kozono N, Ikemura S, Yamashita A, Harada T, Watanabe T, Shirasawa K, Direct reduction may need to be considered to avoid postoperative subtype P in patients with an unstable trochanteric fracture: a retrospective study using a multivariate analysis., Arch Orthop Trauma Surg, https://doi.org/10.1007/s00402-014-2089-2, 134, 12, 1649-1654, 2014.12.
Presentations
1. Kozono N, Takeuchi N, Okada T, Hamai S, Higaki H, Shimoto T, Ikebe S, Gondo H, Senju T, Nakashima Y, Dynamic Scapulohumeral Rhythm: Comparison of Healthy Shoulders and Shoulders with Rotator Cuff Tears, 2020 Annual Meeting of the Orthopaedic Research Society, 2020.02.
2. Senju T, Okada T, Takeuchi N, Kozono N, Nakanishi Y, Higaki H, Shimoto T, Nakashima Y, Biomechanical Analysis Of Four Different Medial Row Configurations Of Suture Bridge Rotator Cuff Repair, 2020 Annual Meeting of the Orthopaedic Research Society, 2020.02.
3. Kozono N, Okada T, Takeuchi N, Hamai S, Higaki H, Shimoto T, Ikebe S, Gondo H, Nakanishi Y, Senju T, Nakashima Y, In Vivo Dynamic Acromiohumeral Distance: Biomechanical Comparison of Shoulders with Rotator Cuff Tears and Healthy Shoulders, 2019 Annual Meeting of the Orthopaedic Research Society, 2019.02.
4. Kozono N, Okada T, Takeuchi N, Hanada M, Shimoto T, Miyamoto C, Higaki H, Nakanishi Y, Senju T, Nakashima Y, A Biomechanical Comparison of Asymmetric Pennington Technique versus Conventional Core Suture Techniques: 6-Strand Flexor Tendon Repair, 2019 Annual Meeting of the Orthopaedic Research Society, 2019.02.
5. Kozono N, Okada T, Takeuchi N, Hamai S, Higaki H, Ikebe S, Gondo H, Shimoto T, Nakanishi Y, Senju T, Nakashima Y, In Vivo Kinematic Analysis of the Glenohumeral Joint in Shoulders with Rotator Cuff Tears, 2018 Annual Meeting of the Orthopaedic Research Society, 2018.03.
6. Kozono N, Okada T, Takeuchi N, Hanada M, Shimoto T, Miyaji R, Higaki H, Nakanishi Y, Senju T, Nakashima Y, Effect of the Optimal Asymmetry on the Strength of Six-Strand Tendon Repair: An Ex Vivo Biomechanical Study, 2018 Annual Meeting of the Orthopaedic Research Society, 2018.03.
7. Miyamoto C, Miyaji R, Shimoto T, Ishikawa A, Higaki H, Miake G, Kozono N, Okada T, Comparison of core suture methods using cyclic loading in flexor tendon repair, XXVI Congress of the International Society of Biomechanics 2017, 2017.07.
8. Kozono N, Okada T, Takeuchi N, Hamai S, Higaki H, Wang Y, Shimoto T, Miake G, Nakanishi Y, Senju T, Nakashima Y, In Vivo Kinematic Analysis of the Glenohumeral Joint during Dynamic Full Axial Rotation and Scapular Plane Full Abduction in Healthy Shoulders, 2017 Annual Meeting of the Orthopaedic Research Society, 2017.03.
9. Kozono N, Okada T, Takeuchi N, Hanada M, Shimoto T, Higaki H, Miake G, Nakanishi Y, Senju T, Nakashima Y, Asymmetric Six-Strand Core Sutures Enhance Tendon Fatigue Strength and the Optimal Asymmetry, 2017 Annual Meeting of the Orthopaedic Research Society, 2017.03.
10. Takaki S, Shimoto T, Wang Y, Shiraishi Y, Kozono N, Hamai S, Okada T, Higaki H, Kinematic analysis of shoulder joint using 2D-3D Registration technique, The 16th International Conference on Biomedical Engineering, 2016.12.
11. Miyamoto C, Miyaji R, Shimoto T, Ikebe S, Ishikawa A, Higaki H, Miake G, Kozono N, Okada T, Evaluation of the suture strength of the asymmetric six-strand core suture by cyclic load testing in flexor tendon repair, The 16th International Conference on Biomedical Engineering, 2016.12.
Membership in Academic Society
  • The Japanese Orthopaedic Association
  • Japan Shoulder Society
  • Japanese Society for Surgery of the Hand
  • West-Japanese Society of Orthopedics & Traumatology
  • Orthopaedic Research Society
Awards
  • 34th Academic Encouragement Award of Department of Orthopaedic Surgery, Kyushu University
  • 1st Honorable Award of Japanese Society for Surgery of the Hand