Desmurget M, Jordan M, Prablanc C, Jeannerod M
Institut National de l Santé et de la Recherche Médicale U94, Bron, France.
J Neurophysiol. 1997 Mar;77(3):1644-50. doi: 10.1152/jn.1997.77.3.1644.
This experiment was carried out to test whether or not the rules governing the execution of compliant and unconstrained movements are different (a compliant motion is defined as a motion constrained by external contact). To answer this question we examined the characteristics of visually directed movements performed with either the index fingertip (unconstrained) or a hand-held cursor (compliant). For each of these categories of movements, two experimental conditions were investigated: no instruction about hand path, and instruction to move the fingertip along a straight-line path. The results of the experiment were as follows: 1) The spatiotemporal characteristics of the compliant and unconstrained movements were fundamentally different when the subjects were not required to follow a specific hand path. 2) The instruction to perform straight movements modified the characteristics of the unconstrained movements, but not those of the compliant movements. 3) The target eccentricity influenced selectively the curvature of the "unconstrained-no path instruction" movements. Taken together, these results suggest that compliant and unconstrained movements involve different control strategies. Our data support the hypothesis that unconstrained motions are, unlike compliant motions, not programmed to follow a straight-line path in the task space. These observations provide a theoretical reference frame within which some apparently contradictory results reported in the movement generation literature may be explained.
进行该实验是为了测试控制顺应性运动和无约束运动执行的规则是否不同(顺应性运动定义为受外部接触约束的运动)。为了回答这个问题,我们研究了用食指指尖(无约束)或手持光标(顺应性)进行的视觉引导运动的特征。对于每一类运动,研究了两种实验条件:不对手的路径进行指示,以及指示指尖沿直线路径移动。实验结果如下:1)当受试者不需要遵循特定的手部路径时,顺应性运动和无约束运动的时空特征存在根本差异。2)执行直线运动的指令改变了无约束运动的特征,但未改变顺应性运动的特征。3)目标偏心度选择性地影响“无约束 - 无路径指示”运动的曲率。综合来看,这些结果表明顺应性运动和无约束运动涉及不同的控制策略。我们的数据支持这样的假设,即与顺应性运动不同,无约束运动在任务空间中并非被编程为遵循直线路径。这些观察结果提供了一个理论参考框架,运动生成文献中报道的一些明显矛盾的结果可以在此框架内得到解释。