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运动指令和外周再传入对人类触觉检测的差异控制。

Differential controls over tactile detection in humans by motor commands and peripheral reafference.

作者信息

Chapman C Elaine, Beauchamp Evelyne

机构信息

Groupe de Recherche sur le Systéme Nerveux Central, Département de Physiologie, and Ecole de Réadaptation, Faculté de Médecine, Université de Montréal, Montréal, Québec H3C 3J7 Canada.

出版信息

J Neurophysiol. 2006 Sep;96(3):1664-75. doi: 10.1152/jn.00214.2006. Epub 2006 Jun 14.

Abstract

The purpose of this study was to determine the extent to which motor commands and peripheral reafference differentially control the detection of near-threshold, tactile stimuli. Detection of weak electrical stimuli applied to the index finger (D2) was evaluated with two bias-free measures of sensory detection, the index of detectability (d') and the proportion of stimuli detected. Stimuli were presented at different delays prior to and during two motor tasks, D2 abduction, and elbow extension; both tasks were tested in two modes, active and passive. For both active tasks, the peak decrease in tactile suppression occurred at the onset of electromyographic activity. The time course for the suppression of detection during active and passive D2 abduction was identical, and preceded the onset of movement (respectively, -35 and -47 ms). These results suggest that movement reafference alone, acting through a mechanism of backward masking, could explain the modulation seen with D2 movement. In contrast, tactile suppression was significantly earlier for active elbow movements (-59 ms) as compared with passive (-21 ms), an observation consistent with both the motor command and peripheral reafference contributing to the suppression of detection of stimuli applied to D2 during movements about a proximal joint. A role for the motor command in tactile gating during distal movements cannot be discounted, however, because differences in the strength and distribution of the peripheral reafference may also have contributed to the proximo-distal differences in the timing of the suppression.

摘要

本研究的目的是确定运动指令和外周再传入在多大程度上差异地控制近阈值触觉刺激的检测。使用两种无偏差的感觉检测指标,即可检测性指数(d')和检测到的刺激比例,来评估施加于食指(D2)的弱电刺激的检测情况。在两项运动任务(D2外展和肘部伸展)之前和期间的不同延迟时间呈现刺激;两项任务均在主动和被动两种模式下进行测试。对于两项主动任务,触觉抑制的峰值下降出现在肌电图活动开始时。主动和被动D2外展期间检测抑制的时间进程相同,且在运动开始之前出现(分别为-35和-47毫秒)。这些结果表明,仅通过向后掩蔽机制起作用的运动再传入可以解释D2运动时所见的调制。相比之下,主动肘部运动时的触觉抑制(-59毫秒)明显早于被动运动时(-21毫秒),这一观察结果与运动指令和外周再传入都有助于抑制近端关节运动期间施加于D2的刺激检测一致。然而,运动指令在远端运动期间触觉门控中的作用也不能被忽视,因为外周再传入的强度和分布差异也可能导致了抑制时间上的近端-远端差异。

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