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首页> 外文期刊>Experimental Brain Research >Prehension synergies: a study of digit force adjustments to the continuously varied load force exerted on a partially constrained hand-held object.
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Prehension synergies: a study of digit force adjustments to the continuously varied load force exerted on a partially constrained hand-held object.

机译:感知协同作用:研究对施加在部分约束的手持对象上的连续变化的负载力进行数字力调整的方法。

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We examined how the digit forces adjust when a load force acting on a hand-held object continuously varies. The subjects were required to hold the handle still while a linearly increasing and then decreasing force was applied to the handle. The handle was constrained, such that it could only move up and down, and rotate about a horizontal axis. In addition, the moment arm of the thumb tangential force was 1.5 times the moment arm of the virtual finger (VF, an imagined finger with the mechanical action equal to that of the four fingers) force. Unlike the situation when there are equal moment arms, the experimental setup forced the subjects to choose between (a) sharing equally the increase in load force between the thumb and VF but generating a moment of tangential force, which had to be compensated by negatively co-varying the moment due to normal forces, or (b) sharing unequally the load force increase between the thumb and VF but preventing generation of a moment of tangential forces. We found that different subjects tended to use one of these two strategies. These findings suggest that the selection by the CNS of prehension synergies at the VF-thumb level with respect to the moment of force is non-obligatory and reflects individual subject preferences. This unequal sharing of the load by the tangential forces, in contrast to the previously observed equal sharing, suggests that the invariant feature of prehension may be a correlated increase in tangential forces rather than an equal increase.
机译:我们研究了当作用在手持物体上的负载连续变化时,手指力如何调整。要求受试者在线性增加然后递减的力施加到手柄时保持手柄静止。手柄受到约束,因此只能上下移动,并且只能绕水平轴旋转。此外,拇指切向力的力矩臂是虚拟手指(VF,机械力等于四个手指的想象力的手指)的力矩臂的1.5倍。与存在相等的力矩臂的情况不同,实验设置迫使受试者在(a)均分拇指和VF之间均分担负载力增加但产生切向力矩的情况下进行选择,该力矩必须由负负补偿。 -由于法向力而改变力矩,或者(b)拇指和VF之间的负载力分配不均,但阻止了切向力矩的产生。我们发现不同的受试者倾向于使用这两种策略之一。这些发现表明,中枢神经系统选择相对于力时刻在VF拇指水平上的感觉协同作用不是强制性的,并且反映了个体受试者的偏好。与先前观察到的均分相反,切向力对负载的这种不均等分担表明,握持的不变特征可能是切向力的相关增加,而不是均等的增加。

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