B.S. in Mechanics, Dalian University of Technology, China, 2010
Ph.D. in Mechanical Engineering, University of Leeds, United Kingdom, 2013
Tribology Bronze Medalist, a prestigious early career recognition awarded annually to a single engineer or scientist working in the fields of friction, lubrication and wear, Institution of Mechanical Engineers (IMechE), 2014
He contributes to the following undergraduate and postgraduate modules for the Biomedical Engineering and Design Engineering programmes:
My research interests include:
Development of new technologies to simulate the mechanisms of the musculoskeletal system including bones, joints, ligaments and muscles.
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Li, Junyan (2021) Finite element musculoskeletal modelling framework for coupling of biomechanics and biotribology. In: Computational Modelling of Biomechanics and Biotribology in the Musculoskeletal System: Biomaterials and Tissues. Jin, Zhongmin and Li, Junyan and Chen, Zhenxian , eds. Woodhead Publishing Series in Biomaterials . Woodhead Publishing, pp. 81-98. ISBN 9780128195314 (Published online first)
Li, Junyan (2021) Development and validation of a finite-element musculoskeletal model incorporating a deformable contact model of the hip joint during gait. Journal of the Mechanical Behavior of Biomedical Materials , 113 . pp. 1-6. ISSN 1751-6161
Li, Junyan and Marra, Marco A. and Verdonschot, Nico and Lu, Yongtao (2021) A three-dimensional finite-element model of gluteus medius muscle incorporating inverse-dynamics-based optimization for simulation of non-uniform muscle contraction. Medical Engineering and Physics , 87 . 38 - 44. ISSN 1350-4533
Lu, Yongtao and Zhang, Daxing and Cheng, Liangliang and Yang, Zhuoyue and Li, Junyan (2020) Evaluating the biomechanical interaction between the medical compression stocking and human calf using a highly anatomical fidelity three-dimensional finite element model. Textile Research Journal . ISSN 0040-5175
Lu, Yongtao and Cheng, LiangLiang and Yang, Zhuoyue and Li, Junyan and Zhu, Hanxing (2020) Relationship between the morphological, mechanical and permeability properties of porous bone scaffolds and the underlying microstructure. PLoS One , 15 (9). pp. 1-19. ISSN 1932-6203