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旋转中心的偏移会在等动测试中产生偏差:一个包含刚度或摩擦力的虚拟模型。

Offset of rotation centers creates a bias in isokinetics: a virtual model including stiffness or friction.

作者信息

Deslandes Samuel, Mariot Jean-Pierre, Serveto Sébastien

机构信息

Laboratoire Motricité Intéraction Performance, EA 4334, Université du Maine, Le Mans, France.

出版信息

J Biomech. 2008 Jul 19;41(10):2112-20. doi: 10.1016/j.jbiomech.2008.04.038. Epub 2008 Jun 16.

Abstract

The present paper deals with a virtual model devoted to isokinetics and isometrics assessment of a human muscular group in the common joints, knee, ankle, hip, shoulder, cervical spine, etc. This virtual model with an analytical analysis followed by a numerical simulation is able to predict measurement errors of the joint torque due to offset of rotation centers between the body segment and the ergometer arm. As soon as offset is present, errors increase due to the influence of inertial effects, gravity effects, stiffness due to the limb strapping on the ergometer arm or Coulomb friction between limb and ergometer. The analytical model is written in terms of Lagrange formalism and the numerical model uses ADAMS software adapted to multi-body dynamics simulations. Results of models show a maximal relative error of 11%, for a 10% relative offset between the rotation centers. Inertial contributions are found to be negligible but gravity effects must be discussed in regard to the measured torque. Stiffness or friction effects may also increase the torque error; in particular when offset occurs, it is shown that errors due to friction have to be considered for all torque level while only stiffness effects have to be considered for torque less than 25Nm. This study also emphasizes the influence of the angular range of motion at a given angular position.

摘要

本文涉及一个虚拟模型,该模型用于对人体常见关节(如膝关节、踝关节、髋关节、肩关节、颈椎等)中的肌肉群进行等速和等长评估。这个虚拟模型通过解析分析和数值模拟,能够预测由于身体节段与测力计臂之间旋转中心的偏移而导致的关节扭矩测量误差。一旦存在偏移,由于惯性效应、重力效应、肢体固定在测力计臂上的刚度或肢体与测力计之间的库仑摩擦的影响,误差就会增加。解析模型采用拉格朗日形式表示,数值模型使用适用于多体动力学模拟的ADAMS软件。模型结果表明,当旋转中心之间的相对偏移为10%时,最大相对误差为11%。发现惯性贡献可忽略不计,但必须就测量扭矩讨论重力效应。刚度或摩擦效应也可能增加扭矩误差;特别是当出现偏移时,结果表明,对于所有扭矩水平都必须考虑摩擦引起的误差,而对于小于25Nm的扭矩,只需考虑刚度效应。本研究还强调了在给定角度位置处运动角度范围的影响。

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