Pfann Kerstin D, Corcos Daniel M, Moore Charity G, Hasan Ziaul
School of Kinesiology (MC 194), Rush Presbyterian-St. Luke's Medical Center, Chicago, Illinois 60612, USa.
J Neurophysiol. 2002 Nov;88(5):2399-407. doi: 10.1152/jn.00946.2001.
This study investigated the role of inertial anisotropy at the hand in causing distortions in movement. Subjects drew circles in the horizontal plane at four locations in the workspace at three instructed paces using elbow and shoulder movements. Specifically, we tested two hypotheses, which we would expect if the anisotropy of inertia were not completely accounted for by the CNS when generating circle-drawing movements: 1) speed will affect the circularity of figures, with faster movements associated with greater elongation into an oval shape, irrespective of workspace location for configurations with a similar angle between the forearm and upper arm. 2) The elongation of the circle at fast speeds will be in the direction of least inertia. The results showed that despite individual differences in the speed dependence of the relative motions at the elbow and the shoulder, the circularity decreased (distortion increased) with increased speed, and workspace location had no effect on circularity. We also found that the elongation of the circles at fast speeds was in a direction close to but significantly different from the direction of least inertia for three workspace locations and was in the direction of least inertia for the fourth location. We suggest that the elongation results from lack of full accounting by the CNS of the anisotropy of viscosity and inertia.
本研究调查了手部惯性各向异性在导致运动失真方面的作用。受试者在工作空间的四个位置,以三种指定的速度,通过肘部和肩部运动在水平面内画圆。具体而言,我们测试了两个假设,如果在生成画圆运动时中枢神经系统没有完全考虑惯性各向异性,我们会预期出现以下情况:1)速度会影响图形的圆形度,对于前臂和上臂之间夹角相似的构型,无论工作空间位置如何,速度越快,图形越容易拉长为椭圆形。2)快速运动时圆的拉长方向将是惯性最小的方向。结果表明,尽管肘部和肩部相对运动的速度依赖性存在个体差异,但随着速度增加,圆形度降低(失真增加),且工作空间位置对圆形度没有影响。我们还发现,对于三个工作空间位置,快速运动时圆的拉长方向接近但显著不同于惯性最小的方向,而对于第四个位置,拉长方向则是惯性最小的方向。我们认为,这种拉长是由于中枢神经系统没有充分考虑粘性和惯性的各向异性所致。