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灵长类动物初级体感皮层中的触觉纹理信号及其与主观粗糙度强度的关系。

Tactile texture signals in primate primary somatosensory cortex and their relation to subjective roughness intensity.

作者信息

Bourgeon Stéphanie, Dépeault Alexandra, Meftah El-Mehdi, Chapman C Elaine

机构信息

Groupe de Recherche sur le Système Nerveux Central, Department of Neurosciences, University of Montréal, Montréal, Québec, Canada.

Groupe de Recherche sur le Système Nerveux Central, Department of Neurosciences, University of Montréal, Montréal, Québec, Canada

出版信息

J Neurophysiol. 2016 Apr;115(4):1767-85. doi: 10.1152/jn.00303.2015. Epub 2016 Jan 13.

Abstract

This study investigated the hypothesis that a simple intensive code, based on mean firing rate, could explain the cortical representation of subjective roughness intensity and its invariance with scanning speed. We examined the sensitivity of neurons in the cutaneous, finger representation of primary somatosensory cortex (S1) to a wide range of textures [1 mm high, raised-dot surfaces; spatial periods (SPs), 1.5-8.5 mm], scanned under the digit tips at different speeds (40-115 mm/s). Since subjective roughness estimates show a monotonic increase over this range and are independent of speed, we predicted that the mean firing rate of a subgroup of S1 neurons would share these properties. Single-unit recordings were made in four alert macaques (areas 3b, 1 and 2). Cells whose discharge rate showed a monotonic increase with SP, independent of speed, were particularly concentrated in area 3b. Area 2 was characterized by a high proportion of cells sensitive to speed, with or without texture sensitivity. Area 1 had intermediate properties. We suggest that area 3b and most likely area 1 play a key role in signaling roughness intensity, and that a mean rate code, signaled by both slowly and rapidly adapting neurons, is present at the level of area 3b. Finally, the substantial proportion of neurons that showed a monotonic change in discharge limited to a small range of SPs (often independent of response saturation) could play a role in discriminating smaller changes in SP.

摘要

本研究探讨了一种基于平均放电率的简单密集编码能否解释主观粗糙度强度的皮层表征及其随扫描速度的不变性这一假设。我们检测了初级体感皮层(S1)手部皮肤表征区域中神经元对多种纹理[1毫米高的凸点表面;空间周期(SPs)为1.5 - 8.5毫米]的敏感性,这些纹理在指尖下以不同速度(40 - 115毫米/秒)进行扫描。由于主观粗糙度估计值在此范围内呈单调增加且与速度无关,我们预测S1神经元亚组的平均放电率将具有这些特性。在四只清醒的猕猴(3b区、1区和2区)中进行了单单元记录。放电率随SP单调增加且与速度无关的细胞特别集中在3b区。2区的特点是有很大比例的细胞对速度敏感,无论是否对纹理敏感。1区具有中间特性。我们认为3b区以及很可能1区在传递粗糙度强度信号方面起关键作用,并且在3b区水平存在一种由慢适应和快适应神经元共同发出信号的平均速率编码。最后,相当一部分放电表现出单调变化且局限于一小范围SPs(通常与反应饱和无关)的神经元可能在辨别SPs的较小变化中起作用。

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