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使用精确抓握的猴子体感皮层中的神经元活动。I. 感受野和放电模式。

Neuronal activity in somatosensory cortex of monkeys using a precision grip. I. Receptive fields and discharge patterns.

作者信息

Salimi I, Brochier T, Smith A M

机构信息

Centre de Recherche en Sciences Neurologiques, Département de Physiologie, Université de Montréal, Montreal, Quebec H3C 3J7, Canada.

出版信息

J Neurophysiol. 1999 Feb;81(2):825-34. doi: 10.1152/jn.1999.81.2.825.

Abstract

Three adolescent Macaca fascicularis monkeys weighing between 3.5 and 4 kg were trained to use a precision grip to grasp a metal tab mounted on a low friction vertical track and to lift and hold it in a 12- to 25-mm position window for 1 s. The surface texture of the metal tab in contact with the fingers and the weight of the object could be varied. The activity of 386 single cells with cutaneous receptive fields contacting the metal tab were recorded in Brodmann's areas 3b, 1, 2, 5, and 7 of the somatosensory cortex. In this first of a series of papers, we describe three types of discharge pattern, the receptive-field properties, and the anatomic distribution of the neurons. The majority of the receptive fields were cutaneous and covered less than one digit, and a chi2 test did not reveal any significant differences in the Brodmann's areas representing the thumb and index finger. Two broad categories of discharge pattern cells were identified. The first category, dynamic cells, showed a brief increase in activity beginning near grip onset, which quickly subsided despite continued pressure applied to the receptive field. Some of the dynamic neurons responded to both skin indentation and release. The second category, static cells, had higher activity during the stationary holding phase of the task. These static neurons demonstrated varying degrees of sensitivity to rates of pressure change on the skin. The percentage of dynamic versus static cells was about equal for areas 3b, 2, 5, and 7. Only area 1 had a higher proportion of dynamic cells (76%). A third category was identified that contained cells with significant pregrip activity and included cortical cells with both dynamic or static discharge patterns. Cells in this category showed activity increases before movement in the absence of receptive-field stimulation, suggesting that, in addition to peripheral cutaneous input, these cells also receive strong excitation from movement-related regions of the brain.

摘要

选用了三只体重在3.5至4千克之间的未成年食蟹猴,训练它们运用精确抓握方式抓住安装在低摩擦垂直轨道上的金属片,并将其提起并保持在12至25毫米的位置窗口内1秒钟。与手指接触的金属片的表面纹理以及物体的重量可以改变。在体感皮层的布罗德曼区3b、1、2、5和7中记录了386个具有与金属片接触的皮肤感受野的单细胞的活动。在这一系列论文的第一篇中,我们描述了三种放电模式类型、感受野特性以及神经元的解剖分布。大多数感受野是皮肤性的,覆盖范围小于一个手指,并且卡方检验未显示在代表拇指和食指的布罗德曼区之间存在任何显著差异。确定了两大类放电模式细胞。第一类是动态细胞,在抓握开始附近活动短暂增加,尽管持续向感受野施加压力,活动很快就会减弱。一些动态神经元对皮肤凹陷和松开都有反应。第二类是静态细胞 在任务的静止握持阶段具有较高的活动。这些静态神经元对皮肤上压力变化的速率表现出不同程度的敏感性。在3b区、2区、5区和7区,动态细胞与静态细胞的百分比大致相等。只有1区动态细胞的比例较高(76%)。还确定了第三类,其中包含具有显著抓握前活动的细胞,包括具有动态或静态放电模式的皮层细胞。这一类中的细胞在没有感受野刺激的情况下,在运动前活动增加,这表明,除了外周皮肤输入外,这些细胞还从大脑的运动相关区域接受强烈的兴奋。

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