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在 5 名受试者中进行的日常生活活动中的膝关节加载的体内测量。

Loading of the knee joint during activities of daily living measured in vivo in five subjects.

机构信息

Julius Wolff Institute, Charité - Universitätsmedizin Berlin, 13353 Berlin, Germany.

出版信息

J Biomech. 2010 Aug 10;43(11):2164-73. doi: 10.1016/j.jbiomech.2010.03.046.

Abstract

Detailed knowledge about loading of the knee joint is essential for preclinical testing of implants, validation of musculoskeletal models and biomechanical understanding of the knee joint. The contact forces and moments acting on the tibial component were therefore measured in 5 subjects in vivo by an instrumented knee implant during various activities of daily living. Average peak resultant forces, in percent of body weight, were highest during stair descending (346% BW), followed by stair ascending (316% BW), level walking (261% BW), one legged stance (259% BW), knee bending (253% BW), standing up (246% BW), sitting down (225% BW) and two legged stance (107% BW). Peak shear forces were about 10-20 times smaller than the axial force. Resultant forces acted almost vertically on the tibial plateau even during high flexion. Highest moments acted in the frontal plane with a typical peak to peak range -2.91% BWm (adduction moment) to 1.61% BWm (abduction moment) throughout all activities. Peak flexion/extension moments ranged between -0.44% BWm (extension moment) and 3.16% BWm (flexion moment). Peak external/internal torques lay between -1.1% BWm (internal torque) and 0.53% BWm (external torque). The knee joint is highly loaded during daily life. In general, resultant contact forces during dynamic activities were lower than the ones predicted by many mathematical models, but lay in a similar range as measured in vivo by others. Some of the observed load components were much higher than those currently applied when testing knee implants.

摘要

详细了解膝关节的受力情况对于植入物的临床前测试、肌肉骨骼模型的验证以及膝关节的生物力学理解至关重要。因此,通过一种带有仪器的膝关节植入物,在 5 名受试者的体内,在各种日常活动中测量胫骨部件上的接触力和力矩。平均峰值合成力(占体重的百分比)在楼梯下降时最高(346% BW),其次是楼梯上升(316% BW)、水平行走(261% BW)、单腿站立(259% BW)、膝关节弯曲(253% BW)、站立(246% BW)、坐下(225% BW)和双腿站立(107% BW)。峰值剪切力比轴向力小 10-20 倍左右。即使在高屈曲时,合成力也几乎垂直作用于胫骨平台上。最高的力矩作用于额状面,所有活动中典型的峰值到峰值范围为-2.91% BWm(内收力矩)至 1.61% BWm(外展力矩)。峰值屈伸力矩范围在-0.44% BWm(伸展力矩)至 3.16% BWm(弯曲力矩)之间。峰值外旋/内旋力矩在-1.1% BWm(内旋力矩)至 0.53% BWm(外旋力矩)之间。膝关节在日常生活中承受高负荷。一般来说,动态活动中的合成接触力低于许多数学模型预测的值,但与其他人在体内测量的值处于相似范围内。一些观察到的负荷分量远高于目前测试膝关节植入物时施加的负荷。

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