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剪切力与负载地面反作用力的比值可能是自动姿势对旋转和平移反应方向调整的基础。

Ratio of shear to load ground-reaction force may underlie the directional tuning of the automatic postural response to rotation and translation.

作者信息

Ting Lena H, Macpherson Jane M

机构信息

Neurological Sciences Institute, Oregon Health and Sciences University, Beaverton, OR 97006-3409, USA.

出版信息

J Neurophysiol. 2004 Aug;92(2):808-23. doi: 10.1152/jn.00773.2003. Epub 2004 Apr 14.

Abstract

This study sought to identify the sensory signals that encode perturbation direction rapidly enough to shape the directional tuning of the automatic postural response. We compared reactions to 16 directions of pitch and roll rotation and 16 directions of linear translation in the horizontal plane in freely standing cats. Rotations and translations that displaced the center of mass in the same direction relative to the feet evoked similar patterns of muscle activity and active ground-reaction force, suggesting the presence of a single, robust postural strategy for stabilizing the center of mass in both rotation and translation. Therefore we postulated there should be a common sensory input that encodes the direction of the perturbation and leads to the directional tuning of the early electromyographic burst in the postural response. We compared the mechanical changes induced by rotations and translations prior to the active, postural response. The only consistent feature common to the full range of rotation and translation directions was the initial change in ground-reaction force angle. Other variables including joint angles, ground-reaction force magnitudes, center of pressure, and center of mass in space showed opposite or nonsignificant changes for rotation and translation. Change in force angle at the paw reflects the ratio of loading force to slip force, analogous to slips during finger grip tasks. We propose that cutaneous sensors in the foot soles detect change in ground-reaction force angle and provide the critical input underlying the directional tuning of the automatic postural response for balance.

摘要

本研究旨在确定能够足够快速地编码扰动方向以塑造自动姿势反应方向调谐的感觉信号。我们比较了自由站立的猫对16个俯仰和滚动旋转方向以及16个水平面内线性平移方向的反应。相对于足部,使质心在相同方向上位移的旋转和平移引发了相似的肌肉活动模式和主动地面反作用力模式,这表明存在一种单一、强大的姿势策略来在旋转和平移中稳定质心。因此,我们推测应该存在一种共同的感觉输入,它编码扰动方向并导致姿势反应中早期肌电图爆发的方向调谐。我们比较了在主动姿势反应之前由旋转和平移引起的机械变化。旋转和平移方向全范围内唯一一致的特征是地面反作用力角度的初始变化。其他变量,包括关节角度、地面反作用力大小、压力中心和空间质心,在旋转和平移时显示出相反或不显著的变化。爪部力角度的变化反映了加载力与滑动力的比率,类似于手指抓握任务中的滑动。我们提出,足底的皮肤传感器检测地面反作用力角度的变化,并为自动姿势反应平衡的方向调谐提供关键输入。

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