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猫中脑的体感中脑间核。

The somatosensory intercollicular nucleus of the cat's mesencephalon.

作者信息

Blomqvist A, Danielsson I, Norrsell U

机构信息

Department of Physiology, University of Göteborg, Sweden.

出版信息

J Physiol. 1990 Oct;429:191-203. doi: 10.1113/jphysiol.1990.sp018251.

Abstract
  1. Unitary, neural activity was sampled with tungsten electrodes in the mesencephalic, intercollicular region of cats anaesthetized with chloralose. The units' stereotaxic co-ordinates were noted and they were tested for activation by adequate tactile, visual and acoustic stimuli as well as electrical nerve stimulation. The units' geometrical gradations were afterwards translated into morphological terms by means of unbiased, cytoarchitectonic identifications of those structures which had been penetrated by the electrodes. 2. The primary objectives were the conventional, somatosensory units, which had reliable, low-threshold, tactile receptive fields and could not be activated by the two other types of adequate stimulation. There were 139 such units from a total sample of 495. 3. These somatosensory units were found to occupy many of the region's structures, notably the intercollicular nucleus (INC), the nucleus of the brachium of the inferior colliculus, the stratum griseum intermedium and the stratum griseum profundum of the superior colliculus. INC was the only structure which had an exclusively somatosensory input. 4. The units of INC had tactile receptive fields varying between one and several hundred square centimetres. Convergence of afferent input from outside these fields could sometimes be demonstrated by nerve stimulation. The latencies of activation from the contralateral sciatic nerve were, on average, shorter for units of INC than for the somatosensory units of the other intercollicular structures, and INC units could also follow higher stimulation frequencies. 5. The findings support the assumption that INC may constitute a distinct mesencephalic centre for somatosensory function.
摘要
  1. 采用单一的方法,用钨电极在以水合氯醛麻醉的猫的中脑、上丘间区域采集神经活动。记录这些神经元的立体定位坐标,并通过适当的触觉、视觉和听觉刺激以及电神经刺激来测试它们的激活情况。之后,通过对电极穿透的那些结构进行无偏倚的细胞构筑学鉴定,将这些神经元的几何分级转化为形态学术语。2. 主要目标是传统的躯体感觉神经元,它们具有可靠的、低阈值的触觉感受野,并且不能被其他两种类型的适当刺激激活。在总共495个样本中有139个这样的神经元。3. 发现这些躯体感觉神经元占据了该区域的许多结构,特别是上丘间核(INC)、下丘臂核、上丘的中间灰质层和深层灰质层。INC是唯一仅具有躯体感觉输入的结构。4. INC的神经元具有面积在1平方厘米到数百平方厘米之间变化的触觉感受野。有时可以通过神经刺激证明来自这些感受野之外的传入输入的汇聚。INC神经元对来自对侧坐骨神经的激活潜伏期平均比对其他上丘间结构的躯体感觉神经元短,并且INC神经元也能跟随更高的刺激频率。5. 这些发现支持这样的假设,即INC可能构成一个独特的中脑躯体感觉功能中心。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/57d4/1181694/cc168571adc9/jphysiol00458-0203-a.jpg

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