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[坐立运动中膝关节的动力学分析]

[Dynamics analysis of knee joint during sit-stand movement].

作者信息

Su Peng, Wang Sikai, Zhang Li, Liu Tian, Yue Chao, Zhang Qinjian

机构信息

School of Electromechanical Engineering, Beijing Information Science and Technology University, Beijing 100192, P. R. China.

Rehabilitation Hospital, National Research Center for Rehabilitation Technical Aids, Beijing 100176, P. R. China.

出版信息

Sheng Wu Yi Xue Gong Cheng Xue Za Zhi. 2022 Oct 25;39(5):982-990. doi: 10.7507/1001-5515.202203021.

Abstract

Sit-stand movement is one of the most common movement behaviors of the human body. The knee joint is the main bearing joint of this movement. Thus, the dynamic analysis of knee joint during this movement has deeply positive influences. According to the principle of moment balance, the dynamics of the knee joint during the movement were analyzed. Furthermore, combined with the data obtained from optical motion capture and six-dimensional ground reaction force test, the curve of knee joint torque was calculated. To verify the accuracy of the analysis of dynamic, the human body model was established, the polynomial equations of angle and angular velocity were fitted according to the experimental data, and the knee joint simulation of the movement was carried out. The result revealed that in terms of range and trend, the theoretical data and simulation data were consistent. The relationship between knee joint torque and ground reaction force was revealed based on the variation law of knee joint torque. During the sit-stand movement, the knee joint torque and the ground reaction force were directly proportional to each other, and the ratio was 5 to 6. In the standing process, the acceleration first increased and then decreased and finally increased in reverse, and the maximum knee torque occurred at an angle of about 140°. In the sitting process, the torque was maximized in the initial stage. The results of the dynamics analysis of knee joint during sit-stand movement are beneficial to the optimal design and force feedback control of seated rehabilitation aids, and can provide theoretical guidance for knee rehabilitation training.

摘要

坐立运动是人体最常见的运动行为之一。膝关节是该运动的主要承重关节。因此,对该运动过程中膝关节的动力学分析具有深远的积极影响。根据力矩平衡原理,分析了运动过程中膝关节的动力学。此外,结合光学运动捕捉和六维地面反作用力测试获得的数据,计算了膝关节扭矩曲线。为验证动力学分析的准确性,建立了人体模型,根据实验数据拟合了角度和角速度的多项式方程,并对该运动进行了膝关节模拟。结果表明,在范围和趋势方面,理论数据与模拟数据一致。基于膝关节扭矩的变化规律,揭示了膝关节扭矩与地面反作用力之间的关系。在坐立运动过程中,膝关节扭矩与地面反作用力成正比,比例为5比6。在站立过程中,加速度先增大后减小,最后反向增大,最大膝关节扭矩出现在约140°的角度处。在坐下过程中,扭矩在初始阶段达到最大值。坐立运动过程中膝关节动力学分析的结果有利于坐式康复辅助器具的优化设计和力反馈控制,并可为膝关节康复训练提供理论指导。

相似文献

1
[Dynamics analysis of knee joint during sit-stand movement].[坐立运动中膝关节的动力学分析]
Sheng Wu Yi Xue Gong Cheng Xue Za Zhi. 2022 Oct 25;39(5):982-990. doi: 10.7507/1001-5515.202203021.
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An analysis of sit-to-stand movements.坐立动作分析。
Arch Phys Med Rehabil. 1993 Oct;74(10):1095-9. doi: 10.1016/0003-9993(93)90068-l.

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