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姿势不确定性导致人类行走过程中足部皮肤反射的动态控制。

Postural uncertainty leads to dynamic control of cutaneous reflexes from the foot during human walking.

作者信息

Haridas Carlos, Zehr E Paul, Misiaszek John E

机构信息

Centre for Neuroscience, University of Alberta, Edmonton, AB, Canada.

出版信息

Brain Res. 2005 Nov 16;1062(1-2):48-62. doi: 10.1016/j.brainres.2005.09.003. Epub 2005 Oct 24.

Abstract

Cutaneous reflexes evoked by stimulation of nerves innervating the foot are modulated in a phase-dependent manner during locomotion. The pattern of modulation of these reflexes has been suggested to indicate a functional role of cutaneous reflexes in assisting to maintain stability during walking. We hypothesized that if cutaneous reflexes assist in maintaining stability during gait, then these reflexes should be modulated in a context-dependent manner when subjects are asked to walk in an environment in which stability is challenged. To do this, we asked subjects to walk on a treadmill under five conditions: (1) normally, (2) with the arms crossed, (3) while receiving unpredictable anterior-posterior (AP) perturbations, (4) with the arms crossed while receiving unpredictable AP perturbations, and (5) with the hands holding onto fixed handles. Cutaneous reflexes arising from electrical stimulation of the superficial peroneal (SP; relevant to stumbling) or distal tibial (TIB; relevant to ground contact sensation) nerves were recorded bilaterally, at four points in the step cycle. Reflexes evoked with SP nerve stimulation showed marked facilitation during the most unstable walking condition in 4 of the 7 muscles tested. SP nerve-evoked reflexes in the muscles of the contralateral leg also showed suppression during the most stable walking condition. Reflexes evoked with TIB nerve stimulation were less affected by changes in the walking task. We argue that the specific adaptation of cutaneous reflexes observed with SP nerve stimulation supports the hypothesis that cutaneous reflexes from the foot contribute to the maintenance of stability during walking.

摘要

在运动过程中,刺激支配足部的神经所诱发的皮肤反射会以相位依赖的方式受到调节。这些反射的调节模式被认为表明了皮肤反射在协助维持行走稳定性方面的功能作用。我们假设,如果皮肤反射在步态中有助于维持稳定性,那么当受试者被要求在稳定性受到挑战的环境中行走时,这些反射应该会以情境依赖的方式受到调节。为此,我们要求受试者在跑步机上进行五种条件下的行走:(1)正常行走,(2)双臂交叉行走,(3)接受不可预测的前后(AP)扰动时行走,(4)双臂交叉且接受不可预测的AP扰动时行走,以及(5)双手握住固定把手行走。在步周期的四个时间点,双侧记录由电刺激腓浅神经(SP;与绊倒相关)或胫神经远端(TIB;与地面接触感觉相关)所引发的皮肤反射。在测试的7块肌肉中的4块中,SP神经刺激诱发的反射在最不稳定的行走条件下表现出明显的易化。对侧腿部肌肉中由SP神经诱发的反射在最稳定的行走条件下也表现出抑制。TIB神经刺激诱发的反射受行走任务变化的影响较小。我们认为,观察到的SP神经刺激下皮肤反射的特定适应性支持了这样的假设,即来自足部的皮肤反射有助于在行走过程中维持稳定性。

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