OUYANG Yuanming  

  • Doctoral Supervisor, Professor
  • Department: Orthopedics
  • Research Area: Surgery (Orthopedics)
  • Research Interests: Peripheral nerve regeneration and nanobiomaterials, Tendon regeneration and repair, Mechanism of osteoarthritis
  • Contact: ouyangyuanming@163.com

Ouyang Yuanming, M.D., is a joint surgeon and chief physician at Shanghai Sixth People's Hospital. The annual number of surgeries is more than 1,000. His specialist focus includes:

  • Total knee arthroplasty (TKA), total hip arthroplasty (THA), total elbow arthroplasty (TEA)
  • Reverse total shoulder arthroplasty (RTSA)
  • Hip-preserving surgery and knee-preserving surgery
  • Shoulder arthroscopy, elbow arthroscopy, hip arthroscopy, knee arthroscopy, ankle arthroscopy
  • Surgical release of elbow stiffness, knee stiffness, hip stiffness caused by heterotopic ossification

Position:

  • Chief Physician, Shanghai Sixth People's Hospital, 2023-now
  • Associated Chief Physician, Shanghai Sixth People's Hospital, 2016-2023

Education: 

  • PhD from Shanghai Jiao Tong University School of Medicine, 2013
  • Master of Medicine from Wenzhou Medical University, 2008
  • Bachelor of Medicine from Zhejiang University, 2002
  • Committee Member, Chinese Society of Hand Surgery
  • Committee Member and Secretary, Shanghai Association of Chinese Society of Hand Surgery
  • Committee member, Joint Disability Reconstruction and Rehabilitation Group of Chinese Association of Orthopaedic Surgeons
  • Member, Shanghai Sports Medicine and Joint Mini-invasive Surgery Group
  • Youth Committee Member, Trauma Specialty of Shanghai Association of Chinese Integrative Medicine
  • Member, Asia Pacific Knee, Arthroscopy and Sports Medicine Society
  • Editorial Board Member of Frontiers in Neuroscience
  1. Yao X, Zhan L, Yan Z, Li, Kong L, Wang X, Xiao H, Jiang H, Huang C, Ouyang Y, Qian Y, Fan C. Metal organic framework-modified bioadaptable implant potentiates the reconstruction of nerve microenvironment via immunometabolism reprogramming. Nano Today, 2023, doi: 10.1016/j.nantod.2023.101814
  2. Yao X, Yan Z, Liu A, Zhan L, Liu Y, Huang C, Ouyang Y, Ruan H, Qian Y, Fan C. Non-electric bioelectrical analog strategy by a biophysical-driven nano-micro spatial anisotropic scaffold for regulating stem cell niche and tissue regeneration in a neuronal therapy. Bioactive Materials, 2023, doi: 10.1016/j.bioactmat.2022.05.034
  3. Wang S, Yao Z, Zhang X, Li J, Huang C, Ouyang Y, Qian Y, Fan C. Energy-Supporting Enzyme-Mimic Nanoscaffold Facilitates Tendon Regeneration Based on a Mitochondrial Protection and Microenvironment Remodeling Strategy. Adv Sci, 2022, doi: 10.1002/advs.202202542
  4. Li X, He N, Li X, Wang X, Zhan L, Yuan W, Song J, Ouyang Y. Graphdiyne-loaded polycaprolactone nanofiber scaffold for peripheral nerve regeneration. Journal of Colloid And Interface Science, 2023, doi: 10.1016/j.jcis.2023.05.054
  5. Jiang H,  Wang X,  Li X, Jin Y, Yan Z, Yao X, Yuan W, Qian Yun, Ouyang Y. A multifunctional ATP-generating system by reduced graphene oxide-based scaffold repairs neuronal injury by improving mitochondrial function and restoring bioelectricity conduction. Materials Today Bio, 2022, doi: 10.1016/j.mtbio.2022.100211
  6. Qian Y, Wang X, Song J, Chen W, Chen S, Jin Y, Ouyang Y, Yuan WE, Fan C. Preclinical assessment on neuronal regeneration in the injury-related microenvironment of graphene-based scaffolds. NPJ Regen Med 2021.doi: 10.1038/s41536-021-00142-2
  7. Yao X, Yan Z, Li X, Li X, Ouyang Y, Fan C. Tacrolimus-Induced Neurotrophic Differentiation of Adipose-Derived Stem Cells as Novel Therapeutic Method for Peripheral Nerve Injury. Front Cell Neurosci 2021. doi: 10.3389/fncel.2021.799151
  8. Fang Z, Ge X, Chen X, Xu Y, Yuan WE, Ouyang Y. Enhancement of sciatic nerve regeneration with dual delivery of vascular endothelial growth factor and nerve growth factor genes. J Nanobiotechnology 2020 doi: 10.1186/s12951-020-00606-5
  9. Qian Y, Yao Z, Wang X, Cheng Y, Fang Z, Yuan WE, Fan C, Ouyang Y. (-)-Epigallocatechin gallate-loaded polycaprolactone scaffolds fabricated using a 3D integrated moulding method alleviate immune stress and induce neurogenesis. Cell Prolif 2020, e12730. doi: 10.1111/cpr.12730
  10. Qian Y, Song J, Zhao X, Chen W, Ouyang Y, Yuan W, Fan C. 2018. 3D Fabrication with Integration Molding of a Graphene Oxide/Polycaprolactone Nanoscaffold for Neurite Regeneration and Angiogenesis. Adv Sci 2018 1700499. doi: 10.1002/advs.201700499
  1. [Qian Yun, Fan Cunyi, Yao Xiangyun, Ouyang Yuanming, et al.] (2023), “A kind of neural catheter loaded with adipose stem cells and preparation method thereof”, CN114732960 B.  ZL 202210327300.5
  2. [Qian Yun, Fan Cunyi, Yao Xiangyun, Ouyang Yuanming, et al.] (2023), “A kind of piezoelectric conductive composite scaffold and preparation method thereof”, CN 114984311 B   ZL 202210509892.2
  3. [Ouyang Yuanming, Yuan Weien, Fan Cunyi, et al.] (2023), “A kind of piezoelectric conductive composite scaffold and preparation method thereof”, CN 114796628 B   ZL 202210207175.4 Melatonin nerve catheter and preparation method thereof
  4. [Zhu Yi, Ouyang Yuanming, Hu Ping, et al.] (2020), “A kind of medical rehabilitation training device for elbow joint that can be rotated and flexed and extended”, ZL 201921255233.0
  5. [Ouyang Yuanming, Wang Wei, Zong Yang, et al.] (2020), “Fastening device for fracture fixation in fractures”, ZL 201711112337.1