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重力惯性力背景水平影响对伸手动作科里奥利力扰动的适应。

Gravitoinertial force background level affects adaptation to coriolis force perturbations of reaching movements.

作者信息

Lackner J R, Dizio P

机构信息

Ashton Graybiel Spatial Orientation Laboratory, Brandeis University, Waltham, Massachusetts 02254-9110, USA.

出版信息

J Neurophysiol. 1998 Aug;80(2):546-53. doi: 10.1152/jn.1998.80.2.546.

Abstract

We evaluated the combined effects on reaching movements of the transient, movement-dependent Coriolis forces and the static centrifugal forces generated in a rotating environment. Specifically, we assessed the effects of comparable Coriolis force perturbations in different static force backgrounds. Two groups of subjects made reaching movements toward a just-extinguished visual target before rotation began, during 10 rpm counterclockwise rotation, and after rotation ceased. One group was seated on the axis of rotation, the other 2.23 m away. The resultant of gravity and centrifugal force on the hand was 1.0 g for the on-center group during 10 rpm rotation, and 1.031 g for the off-center group because of the 0.25 g centrifugal force present. For both groups, rightward Coriolis forces, approximately 0.2 g peak, were generated during voluntary arm movements. The endpoints and paths of the initial per-rotation movements were deviated rightward for both groups by comparable amounts. Within 10 subsequent reaches, the on-center group regained baseline accuracy and straight-line paths; however, even after 40 movements the off-center group had not resumed baseline endpoint accuracy. Mirror-image aftereffects occurred when rotation stopped. These findings demonstrate that manual control is disrupted by transient Coriolis force perturbations and that adaptation can occur even in the absence of visual feedback. An increase, even a small one, in background force level above normal gravity does not affect the size of the reaching errors induced by Coriolis forces nor does it affect the rate of reacquiring straight reaching paths; however, it does hinder restoration of reaching accuracy.

摘要

我们评估了旋转环境中产生的瞬态、与运动相关的科里奥利力以及静态离心力对伸手动作的综合影响。具体而言,我们评估了在不同静态力背景下可比科里奥利力扰动的影响。两组受试者在旋转开始前、逆时针旋转10转/分钟期间以及旋转停止后,朝着一个刚熄灭的视觉目标进行伸手动作。一组坐在旋转轴上,另一组距离旋转轴2.23米。在10转/分钟旋转期间,对于中心组,作用于手上的重力和离心力的合力为1.0g,而对于偏心组,由于存在0.25g的离心力,合力为1.031g。对于两组,在自愿手臂运动期间都会产生向右的科里奥利力,峰值约为0.2g。两组第一次旋转运动的终点和路径都向右偏移了相当的量。在随后的10次伸手动作中,中心组恢复了基线准确性和直线路径;然而,即使在40次动作之后,偏心组仍未恢复基线终点准确性。旋转停止时出现了镜像后效。这些发现表明,手动控制会受到瞬态科里奥利力扰动的干扰,并且即使在没有视觉反馈的情况下也会发生适应。背景力水平高于正常重力,即使是小幅增加,既不会影响科里奥利力引起的伸手误差大小,也不会影响重新获得直线伸手路径的速率;然而,它确实会阻碍伸手准确性的恢复。

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