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运动控制理论改进了手指按压任务的手部生物力学模型。

Motor control theories improve biomechanical model of the hand for finger pressing tasks.

机构信息

GIPSA-Laboratory, CNRS UMR 5216, Control System Department, SAIGA Team, Grenoble University, France.

出版信息

J Biomech. 2012 Apr 30;45(7):1246-51. doi: 10.1016/j.jbiomech.2012.01.038. Epub 2012 Feb 20.

Abstract

BACKGROUND

Biomechanical models are a useful tool to estimate tendon tensions. Unfortunately, in previous fingers' models, each finger acts independently from the others. This is contradictory with hand motor control theories which show that fingers are functionally linked in order to balance the wrist/forearm joint with minimal tendon tensions. (i.e. principle of minimization of the secondary moments). We propose to adapt a hand biomechanical model according to this principle by including the wrist joint. We will determine whether the finger tendon tensions changed with the wrist joint added to the model.

METHODS

Two models have been tested: one considering fingers independently (model A) and one with the fingers mechanically linked by the inclusion of the wrist balance (model B). A single set of data, additional results from the literature and in-vivo values have been used to compare the results.

RESULTS

Model A corroborates previous results in the literature. Contrast results were obtained with model B, especially for the Ring and Little fingers. Different tendon tensions were obtained, particularly, in finger extensor muscles critical to balance the wrist.

DISCUSSION

We discuss the biomechanical results in accordance with the hand/finger motor control theories. It appears that the wrist joint balance is critical for finger tendon tension estimation. When including the wrist joint into finger models, the tendon tension estimations agree well with the minimization of secondary moments and the force deficit.

摘要

背景

生物力学模型是估计肌腱张力的有用工具。然而,在之前的手指模型中,每个手指都是相互独立的。这与手部运动控制理论相矛盾,该理论表明手指是通过功能连接来实现的,以最小的肌腱张力来平衡腕关节/前臂关节(即最小化二次力矩原则)。我们建议通过包含腕关节来适应手部生物力学模型。我们将确定在模型中加入腕关节后,手指肌腱张力是否会发生变化。

方法

我们测试了两种模型:一种是独立考虑手指的模型(模型 A),另一种是通过包含腕关节平衡来机械连接手指的模型(模型 B)。使用了一组数据、文献中的附加结果和体内值来比较结果。

结果

模型 A 验证了文献中的先前结果。模型 B 得出了对比结果,尤其是对于环指和小指。不同的肌腱张力被获得,特别是在对手腕平衡至关重要的手指伸肌中。

讨论

我们根据手部/手指运动控制理论讨论了生物力学结果。腕关节平衡似乎对手指肌腱张力估计至关重要。当将腕关节纳入手指模型中时,肌腱张力的估计与最小化二次力矩和力不足相吻合。

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