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灵长类动物面部初级体感皮层单个神经元的功能特性。I. 与训练后的口面部运动行为的关系。

Functional properties of single neurons in the primate face primary somatosensory cortex. I. Relations with trained orofacial motor behaviors.

作者信息

Lin L D, Murray G M, Sessle B J

机构信息

Faculty of Dentistry, University of Toronto, Ontario, Canada.

出版信息

J Neurophysiol. 1994 Jun;71(6):2377-90. doi: 10.1152/jn.1994.71.6.2377.

DOI:10.1152/jn.1994.71.6.2377
PMID:7931522
Abstract
  1. We have demonstrated recently that reversible, cooling-induced inactivation of the face primary somatosensory cortex (SI) severely impairs the successful performance of a tongue-protrusion task but has relatively minor effects on the performance of a biting task. In an attempt to establish a neuronal correlate for these different behavioral relations, the present study was initiated to document the mechanoreceptive field properties of a population of face SI neurons and their activity during the tongue-protrusion and biting tasks. 2. Within SI, the representation of the face was found immediately lateral to that of the hand, and there was a clear somatotopic pattern of organization within face SI: the periorbital or nose region was located most medially in the face SI, then followed laterally in sequence the representation of the upper lip, lower lip, and intraoral area. A mechanoreceptive field (RF) was identified for 253 neurons, which included 162 "lip RF" neurons receiving mechanosensitive afferent inputs from the upper lip, lower lip, or both; 72 "tongue RF" neurons that received mechanosensitive afferent inputs from the tongue; 11 "periodontium RF" neurons receiving periodontal inputs; and 8 neurons that received inputs from other orofacial regions. 3. Nearly all (249/253) of the face SI neurons responded to light tactile stimuli, and most of them received contralateral inputs (78%) and showed a rapidly adapting (RA) response to tactile stimulation (82%). There was no significant difference in the ratio of slowly adapting (SA) to RA neurons in areas 3b and 1. 4. For 193 neurons studied in one or both of the orofacial tasks, 113 were found, on the basis of histological reconstruction, to be distributed in area 1, 61 in area 3b, and 19 in area 2. 5. The firing rate of most tongue RF (79% of 56) neurons and lip RF (60% of 93) neurons tested was significantly altered during the tongue-protrusion task. Only some (14% of 36 tongue RF neurons and 34% of the 92 lip RF neurons tested) showed a significant change in firing rate during the biting task. Three of 7 periodontium RF neurons studied in the tongue-protrusion task altered their firing rate and 5 of 10 altered their firing rate during the biting task. 6. Most of the 116 face SI neurons studied during both tasks exhibited a preferential relation to the tongue-protrusion task as distinct from the biting task, and none showed task-related activity during the biting task only.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 我们最近证实,面部初级躯体感觉皮层(SI)因冷却导致的可逆性失活会严重损害伸舌任务的顺利完成,但对咬物任务的表现影响相对较小。为了确定这些不同行为关系的神经元关联,本研究着手记录一组面部SI神经元的机械感受野特性及其在伸舌和咬物任务中的活动。2. 在SI内,面部的表征位于手部表征的紧邻外侧,并且面部SI内存在清晰的躯体定位组织模式:眶周或鼻部区域位于面部SI的最内侧,随后依次向外为上唇、下唇和口腔内区域的表征。为253个神经元确定了机械感受野(RF),其中包括162个“唇部RF”神经元,它们接收来自上唇、下唇或两者的机械敏感传入输入;72个“舌部RF”神经元,接收来自舌头的机械敏感传入输入;11个“牙周RF”神经元,接收牙周输入;以及8个接收来自其他口面部区域输入的神经元。3. 几乎所有(249/253)面部SI神经元对轻触觉刺激有反应,其中大多数接收对侧输入(78%),并对触觉刺激表现出快速适应(RA)反应(82%)。在3b区和1区,慢适应(SA)神经元与RA神经元的比例没有显著差异。4. 在一项或两项口面部任务中研究的193个神经元中,根据组织学重建发现,113个分布在1区,61个在3b区,19个在2区。5. 在伸舌任务期间,大多数接受测试的舌部RF(56个中的79%)神经元和唇部RF(93个中的60%)神经元的放电率发生了显著变化。在咬物任务期间,只有一些(36个舌部RF神经元中的14%和92个唇部RF神经元中的34%)显示出放电率的显著变化。在伸舌任务中研究的7个牙周RF神经元中有3个改变了它们的放电率,在咬物任务中10个中有5个改变了放电率。6. 在两项任务中研究的116个面部SI神经元中的大多数表现出与伸舌任务而非咬物任务的优先关联,并且没有一个仅在咬物任务期间表现出与任务相关的活动。(摘要截短至400字)

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