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等长肌力减半与加倍:支持与运动控制平衡点模型一致的减速心理物理学函数的证据。

Halving and doubling isometric force: evidence for a decelerating psychophysical function consistent with an equilibrium-point model of motor control.

作者信息

Van Doren C L

机构信息

Case Western Reserve University, MetroHealth Medical Center, Cleveland, OH 44109-1998, USA.

出版信息

Percept Psychophys. 1996 May;58(4):636-47. doi: 10.3758/bf03213096.

Abstract

Several previous investigations have measured accelerating psychophysical functions for perceived force with exponents of about 1.7. Two halving and doubling experiments presented here imply a psychophysical function for perceived force with an exponent between 0.6 and 0.8. That is, more than a doubling of force was needed to double the sensation, and similarly for halving. In the first experiment, subjects squeezed rigid instrumented cylinders between the thumb and first two fingers of each hand. They generated and released a reference force with one hand, and then squeezed the opposite hand to produce a sensation magnitude equal to, twice that, or half that of the reference. An analysis using a model that accounted for compression bias yielded average psychophysical functions with exponents of 0.58 and 0.59 (nondominant and dominant hands, respectively). The second experiment was an attempt to replicate earlier results and to reconcile them with the first experiment by using a paradigm duplicated from a previous study. Subjects in the second experiment made unilateral halving and doubling judgments of handgrip while squeezing a hand dynamometer. Again, the halving and doubling judgments yielded decelerating functions with exponents of 0.75 and 0.80 (nondominant and dominant hands, respectively). Even though the results of the first two experiments contradict earlier investigations, they can be explained by an equilibrium model of motor control assuming that subjects halve and double the central motor command rather than the sensation of force. The force is simply the result of the mechanical equilibrium established between the load and the compliant effector (the hand). The predicted relationship between the motor command judgments, the compliance of the hand, and the resultant forces was confirmed in a third experiment in which the mechanical compliance of the three-finger pinch was measured by using a pneumatic manipulandum to apply force perturbations in a "do-not-intervene" paradigm. The measured compliance characteristic was accelerating, just as predicted by the model, in order to produce a decelerating psychophysical function for "perceived force." In this experiment, then, judgments of perceived force appear to be judgments of the central motor command.

摘要

先前的几项研究测量了感知力的加速心理物理学函数,其指数约为1.7。这里介绍的两个减半和加倍实验表明,感知力的心理物理学函数指数在0.6到0.8之间。也就是说,要使感觉加倍,所需的力要超过原来的两倍,减半的情况也是如此。在第一个实验中,受试者用每只手的拇指和前两根手指挤压装有仪器的刚性圆柱体。他们用一只手产生并释放一个参考力,然后挤压另一只手,使其产生的感觉强度等于、两倍于或一半于参考力的感觉强度。使用一个考虑了压缩偏差的模型进行分析,得出平均心理物理学函数的指数分别为0.58和0.59(非优势手和优势手)。第二个实验试图通过使用与先前研究相同的范式来复制早期结果,并使其与第一个实验结果相协调。第二个实验中的受试者在挤压握力计时对手握力进行单侧减半和加倍判断。同样,减半和加倍判断产生了减速函数,指数分别为0.75和0.80(非优势手和优势手)。尽管前两个实验的结果与早期研究相矛盾,但可以用运动控制的平衡模型来解释,该模型假设受试者将中央运动指令减半和加倍,而不是力的感觉。力仅仅是负载和顺应性效应器(手)之间建立的机械平衡的结果。在第三个实验中,通过使用气动操作器在“不干预”范式中施加力扰动来测量三指捏合的机械顺应性,从而证实了运动指令判断、手的顺应性和合力之间的预测关系。正如模型所预测的那样,测量到的顺应性特征是加速的,以便为“感知力”产生减速的心理物理学函数。因此,在这个实验中,感知力的判断似乎是对中央运动指令的判断。

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