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影响精确抓握时力量控制的因素。

Factors influencing the force control during precision grip.

作者信息

Westling G, Johansson R S

出版信息

Exp Brain Res. 1984;53(2):277-84. doi: 10.1007/BF00238156.

Abstract

A small object was gripped between the tips of the index finger and thumb and held stationary in space. Its weight and surface structure could be changed between consecutive lifting trials, without changing its visual appearance. The grip force and the vertical lifting force acting on the object, as well as the vertical position of the object were continuously recorded. Likewise, the minimal grip force necessary to prevent slipping, was measured. The difference between this minimal force and the employed grip force, was defined as the safety margin to prevent slipping. It was found that the applied grip force was critically balanced to optimize the motor behaviour so that slipping between the skin and the gripped object did not occur and the grip force did not reach exceedingly high values. To achieve this motor control, the nervous system relied on a mechanism that measured the frictional condition between the surface structure of the object and the fingers. Experiments with local anaesthesia indicated that this mechanism used information from receptors in the fingers, most likely skin mechanoreceptors. In addition to friction, the control of the grip force was heavily influenced by the weight of the object and by a safety margin factor related to the individual subject. The frictional conditions during the previous trial could also, to some extent, influence the grip force.

摘要

一个小物体被夹在食指和拇指指尖之间,并在空间中保持静止。在连续的提起试验之间,可以改变其重量和表面结构,而不改变其视觉外观。持续记录作用在物体上的握力和垂直提起力,以及物体的垂直位置。同样,测量防止物体滑落所需的最小握力。将这个最小力与所施加的握力之间的差值定义为防止滑落的安全裕度。研究发现,所施加的握力经过严格平衡以优化运动行为,从而使皮肤与被握持物体之间不会发生滑落,并且握力不会达到过高的值。为了实现这种运动控制,神经系统依赖于一种机制,该机制测量物体表面结构与手指之间的摩擦状况。局部麻醉实验表明,这种机制利用了来自手指感受器的信息,很可能是皮肤机械感受器。除了摩擦力外,握力的控制还受到物体重量以及与个体受试者相关的安全裕度因素的严重影响。前一次试验期间的摩擦状况在一定程度上也会影响握力。

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