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视觉运动神经元:放电的模糊性还是“运动”感知?

Visuomotor neurons: ambiguity of the discharge or 'motor' perception?

作者信息

Fadiga L, Fogassi L, Gallese V, Rizzolatti G

机构信息

Istituto di Fisiologia Umana, Università di Parma, via Volturno, Italy.

出版信息

Int J Psychophysiol. 2000 Mar;35(2-3):165-77. doi: 10.1016/s0167-8760(99)00051-3.

Abstract

The cortical motor system has been classically considered as the unitary, output stage of the brain processing of sensory information. According to this idea, the motor cortex - the acting brain - receives the result of the perceptual processing (visual, acoustical, tactile, etc.) elaborated by the 'associative cortex'. During the last two decades this perspective has been challenged by a series of anatomical, hodological, and neurophysiological data. This converging evidence delineates a dramatically changed picture. Far from being unitary, the cortical motor system appears to be constituted by a constellation of distinct areas, each of those endowed with specific functional properties and linked by reciprocal connections with distinct sectors of the parietal cortex. Furthermore, several 'motor' neurons in addition to their motor discharge, are also activated by somatosensory and visual stimulation (somatomotor and visuomotor neurons). In the present paper we will discuss the functional properties of those sensorimotor neurons located in the ventral part of the monkey premotor cortex. On the basis of electrophysiological data, we will propose that the apparent parodox stemming from the coexistence within the same neuron of motor and sensory properties can be solved by postulating that the motor system not only executes actions but also internally represents them in terms of 'motor ideas'. These motor ideas may provide the neurobiological basis for space representation, understanding of actions made by others and, possibly, semantic categorization of objects.

摘要

传统上,皮质运动系统被视为大脑处理感觉信息的单一输出阶段。根据这一观点,运动皮质——即起作用的大脑——接收由“联合皮质”所进行的感知处理(视觉、听觉、触觉等)的结果。在过去的二十年里,这一观点受到了一系列解剖学、传导通路学和神经生理学数据的挑战。这些汇聚的证据描绘出了一幅截然不同的画面。皮质运动系统远非单一的,它似乎是由一系列不同的区域组成,每个区域都具有特定的功能特性,并通过与顶叶皮质不同区域的相互连接而联系在一起。此外,除了运动放电外,一些“运动”神经元还会被体感和视觉刺激激活(体感运动神经元和视觉运动神经元)。在本文中,我们将讨论位于猴前运动皮质腹侧的那些感觉运动神经元的功能特性。基于电生理数据,我们将提出,同一神经元内运动和感觉特性并存所产生的明显悖论可以通过假设运动系统不仅执行动作,还在内部以“运动观念”的形式对其进行表征来解决。这些运动观念可能为空间表征、理解他人的动作以及可能的物体语义分类提供神经生物学基础。

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