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指尖体感信息与头部和身体摆动的耦合。

Coupling of fingertip somatosensory information to head and body sway.

作者信息

Jeka J J, Schöner G, Dijkstra T, Ribeiro P, Lackner J R

机构信息

Department of Kinesiology, University of Maryland, College Park 20742-2611, USA.

出版信息

Exp Brain Res. 1997 Mar;113(3):475-83. doi: 10.1007/pl00005600.

Abstract

Light touch contact of a fingertip with a stationary surface can provide orientation information that enhances control of upright stance. Slight changes in contact force at the fingertip provide sensory cues about the direction of body sway, allowing attenuation of sway. In the present study, we asked to which extent somatosensory cues are part of the postural control system, that is, which sensory signal supports this coupling? We investigated postural control not only when the contact surface was stationary, but also when it was moving rhythmically (from 0.1 to 0.5 Hz). In doing so, we brought somatosensory cues from the hand into conflict with other parts of the postural control system. Our focus was the temporal relationship between body sway and the contact surface. Postural sway was highly coherent with contact surface motion. Head and body sway assumed the frequency of the moving contact surface at all test frequencies. To account for these results, a simple model was formulated by approximating the postural control system as a second-order linear dynamical system. The influence of the touch stimulus was captured as the difference between the velocity of the contact surface and the velocity of body sway, multiplied by a coupling constant. Comparison of empirical results (relative phase, coherence, and gain) with model predictions supports the hypothesis of coupling between body sway and touch cues through the velocity of the somatosensory stimulus at the fingertip. One subject, who perceived movement of the touch surface, demonstrated weaker coupling than other subjects, suggesting that cognitive mechanisms introduce flexibility into the postural control scheme.

摘要

指尖与静止表面的轻轻触碰能提供方向信息,增强对直立姿势的控制。指尖接触力的微小变化会提供有关身体摇摆方向的感觉线索,从而减少摇摆。在本研究中,我们探讨了体感线索在多大程度上是姿势控制系统的一部分,即哪种感觉信号支持这种耦合?我们不仅研究了接触表面静止时的姿势控制,还研究了其有节奏地运动(频率从0.1到0.5赫兹)时的姿势控制。在此过程中,我们使来自手部的体感线索与姿势控制系统的其他部分产生冲突。我们关注的是身体摇摆与接触表面之间的时间关系。姿势摇摆与接触表面运动高度相关。在所有测试频率下,头部和身体的摇摆都与移动接触表面的频率一致。为了解释这些结果,通过将姿势控制系统近似为二阶线性动态系统,构建了一个简单模型。触摸刺激的影响被捕捉为接触表面速度与身体摇摆速度之差乘以一个耦合常数。将实验结果(相对相位、相关性和增益)与模型预测进行比较,支持了通过指尖体感刺激速度实现身体摇摆与触摸线索之间耦合的假设。一名感觉到触摸表面运动的受试者表现出比其他受试者更弱的耦合,这表明认知机制为姿势控制方案引入了灵活性。

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