李俊言
教授
博士生导师
硕士生导师
个人信息Personal Information
教师英文名称:Junyan Li
学历:博士研究生毕业
办公地点:四川成都西南交通大学九里校区摩擦学研究所
性别:男
在职信息:在岗
毕业院校:英国利兹大学
学科:生物医学工程. 软件工程. 工程力学. 固体力学. 机械制造及其自动化. 机械设计及理论
所在单位:机械工程学院
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- Li, J., Redmond, A., Jin, Z., Fisher, J., Stone, H. S. and Stewart, T. D. (2014). Hip contact forces in asymptomatic total hip replacement patients differ from normal healthy individuals: implications for preclinical testing. Clinical Biomechanics. 29, 747–751.
- Li, J., Hua, X., Jin, Z., Fisher, J. and Wilcox, R. K. (2014). Influence of clearance on the time-dependent performance of the hip following hemiarthroplasty: a finite element study with biphasic acetabular cartilage properties. Medical Engineering and Physics. 36, 1449–1454.
- Li, J., Wang, Q., Jin, Z., Williams, S., Fisher, J and Wilcox, R. K. (2014). Experimental validation of a new biphasic model of the contact mechanics of the porcine hip. Proceedings of the Institution of Mechanical Engineers, Part H: Journal of Engineering in Medicine. 228, 547-555.
- Hua, X., Li, J., Wang, L., Jin, Z., Wilcox, R. and Fisher. J. (2014). Contact mechanics of modular metalonpolyethylene total hip replacement under adverse edge loading conditions. Journal of Biomechanics. 47, 3303–3309.
- Li, J., Hua, X., Jin, Z., Fisher, J and Wilcox, R. K. (2014). Biphasic investigation of contact mechanics in natural human hips during activities. Proceedings of the Institution of Mechanical Engineers, Part H: Journal of Engineering in Medicine. 228, 556-563.
- Li, J., Stewart, T. D., Jin, Z., Wilcox, R. K. and Fisher, J. (2013). The influence of size, clearance, cartilage properties, thickness and hemiarthroplasty on the contact mechanics of the hip joint with biphasic layers. Journal of Biomechanics. 46, 1641-1647.
- Li, J. (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, 104136.
- Li, J., Marra, M., Verdonschot, N. and Lu, Y. (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.
- Lu, Y., Zhang, D., Cheng L., Yang Z. and Li, J. (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. 0040517520979743.
- Lu, Y., Cheng, L., Yang, Z., Li, J. and Zhu, H. (2020) Relationship between the morphological, mechanical and permeability properties of porous bone scaffolds and the underlying microstructure. PLoS One. 15(9), e0238471.