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用于理解下肢运动损伤机制的肌肉骨骼模拟工具

Musculoskeletal Simulation Tools for Understanding Mechanisms of Lower-Limb Sports Injuries.

作者信息

Bulat Muge, Korkmaz Can Nuray, Arslan Yunus Ziya, Herzog Walter

机构信息

Human Performance Laboratory, University of Calgary, CANADA.

Department of Mechanical Engineering, Istanbul University-Cerrahpasa, TURKEY.

出版信息

Curr Sports Med Rep. 2019 Jun;18(6):210-216. doi: 10.1249/JSR.0000000000000601.

Abstract

Musculoskeletal simulation and dynamic modeling programs have been used to gain insight into lower-limb musculoskeletal injury mechanisms. In addition to the temporospatial, kinematic, and kinetic data obtained from motion analysis systems, musculoskeletal simulation programs also can provide information on joint contact and muscle forces, musculotendinous lengths and velocities, and muscle activation levels. Musculoskeletal simulation platforms may help in the assessment of risk factors for sports-related injuries. Using musculoskeletal simulations for injury prevention programs may help lower the incidence of sports injuries, and may allow for fast recovery from injury. In this review, injury mechanisms and risk factors of some of the most common lower-limb musculoskeletal injuries, including anterior cruciate ligament, patellofemoral, and hamstring injuries were summarized from a biomechanical perspective. Also, the efficacy of musculoskeletal modeling and dynamic simulation tools in helping our understanding of these injury mechanisms was discussed.

摘要

肌肉骨骼模拟和动态建模程序已被用于深入了解下肢肌肉骨骼损伤机制。除了从运动分析系统获得的时空、运动学和动力学数据外,肌肉骨骼模拟程序还可以提供有关关节接触和肌肉力量、肌肉肌腱长度和速度以及肌肉激活水平的信息。肌肉骨骼模拟平台可能有助于评估与运动相关损伤的风险因素。将肌肉骨骼模拟用于损伤预防计划可能有助于降低运动损伤的发生率,并可能使伤者快速康复。在这篇综述中,从生物力学角度总结了一些最常见的下肢肌肉骨骼损伤的损伤机制和风险因素,包括前交叉韧带、髌股关节和腘绳肌损伤。此外,还讨论了肌肉骨骼建模和动态模拟工具在帮助我们理解这些损伤机制方面的功效。

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