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The role of tactile afference in shaping motor behaviour and implications for prosthetic innovation

机译:触觉情感在塑造运动行为中的作用及其对修复创新的影响

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The present review focusses on how tactile somatosensory afference is encoded and processed, and how this information is interpreted and acted upon in terms of motor control. We relate the fundamental workings of the sensorimotor system to the rehabilitation of amputees using modern prosthetic interventions. Our sense of touch is central to our everyday lives, from allowing us to manipulate objects accurately to giving us a sense of self-embodiment. There are a variety of specialised cutaneous mechanoreceptive afferents, which differ in terms of type and density according to the skin site. In humans, there is a dense innervation of our hands, which is reflected in their vast over-representation in somatosensory and motor cortical areas. We review the accumulated evidence from animal and human studies about the precise interplay between the somatosensory and motor systems, which is highly integrated in many brain areas and often not separable. The glabrous hand skin provides exquisite, discriminative detail about touch, which is useful for refining movements. When these signals are disrupted, such as through injury or amputation, the consequences are considerable. The development of sensory feedback in prosthetics offers a promising avenue for the full integration of a missing body part. Real-time touch feedback from motor intentions aids in grip control and the ability to distinguish different surfaces, even introducing the possibility of pleasure in artificial touch. Thus, our knowledge from fundamental research into sensorimotor interactions should be used to develop more realistic and integrative prostheses. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本综述着重于如何对触觉体感进行编码和处理,以及如何根据运动控制来解释和采取这些信息。我们将感觉运动系统的基本工作与使用现代义肢干预对截肢者的康复联系起来。从让我们精确地操纵物体到赋予我们自我体现的感觉,我们的触觉对于我们的日常生活至关重要。有多种专门的皮肤机械感受传入,根据皮肤部位的类型和密度不同。在人类中,我们的手具有密集的神经支配,这反映在它们在体感和运动皮层区域中的过多表示。我们回顾了动物和人体研究中有关体感和运动系统之间精确相互作用的证据,该系统在许多大脑区域中高度集成,并且往往不可分离。光滑的手部皮肤可提供有关触摸的精妙而有区别的细节,有助于细化动作。当这些信号(例如由于受伤或截肢)而中断时,后果将是巨大的。假肢感觉反馈的发展为缺失的身体部位的完全融合提供了一条有希望的途径。来自运动意图的实时触摸反馈有助于抓地力控制和区分不同表面的能力,甚至引入了人工触摸带来愉悦感的可能性。因此,我们应从对感觉运动相互作用的基础研究中获得的知识用于开发更现实,更综合的假体。 (C)2015 Elsevier Ltd.保留所有权利。

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