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运动轨迹控制中的适应性可塑性。

Adaptive plasticity in the control of locomotor trajectory.

作者信息

Gordon C R, Fletcher W A, Melvill Jones G, Block E W

机构信息

University of Calgary, Alberta, Canada.

出版信息

Exp Brain Res. 1995;102(3):540-5. doi: 10.1007/BF00230658.

Abstract

Eight human subjects were exposed to 2 h of walking on the perimeter of a horizontally rotating disc with the body remaining still in space. After adaptation to this experience subjects were blindfolded and asked to walk straight ahead on firm ground. When doing so all subjects generated curved walking trajectories of radii ranging from 65 to 200 inches and angular velocities from 7 to 20 deg/s. Subsequent trials over the next half hour revealed retained, but decreasing, trajectory curvature. Angular velocities associated with these trajectories were well above vestibular sensory threshold, yet all subjects consistently perceived themselves as walking straight ahead. The blindfolded subjects were also asked to propel themselves in a straight line in a wheel chair. Post-adaptation wheel chair trajectories showed no change from those before adaptation. Hence we infer that it was the relation between somatosensory/motor elements of gait and the perception of trunk rotation that had been remodelled during walking on the turning disc. This novel form of adaptive plasticity presumably serves to maintain optimal values of central neural parameters that control the trajectory of locomotion. The findings may have significant implications for the diagnosis and rehabilitation of locomotor and vestibular disorders.

摘要

八名受试者在水平旋转圆盘的周边行走2小时,身体在空间中保持静止。适应这种体验后,受试者被蒙上眼睛,要求在坚实的地面上直走。此时,所有受试者都产生了半径在65到200英寸之间、角速度在7到20度/秒之间的弯曲行走轨迹。在接下来的半小时内进行的后续试验显示,轨迹曲率虽有所保留但逐渐减小。与这些轨迹相关的角速度远高于前庭感觉阈值,但所有受试者始终感觉自己在直走。蒙上眼睛的受试者还被要求在轮椅上直线推进。适应后轮椅的轨迹与适应前没有变化。因此,我们推断,在转盘上行走期间,步态的体感/运动要素与躯干旋转感知之间的关系发生了重塑。这种新型的适应性可塑性大概是为了维持控制运动轨迹的中枢神经参数的最佳值。这些发现可能对运动和前庭障碍的诊断及康复具有重要意义。

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