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猫初级视觉皮层中向外侧膝状体核和视觉屏状核提供皮质离心反馈的细胞的差异特性。

Differential properties of cells in the feline primary visual cortex providing the corticofugal feedback to the lateral geniculate nucleus and visual claustrum.

作者信息

Grieve K L, Sillito A M

机构信息

Department of Visual Science, Institute of Ophthalmology, London, United Kingdom.

出版信息

J Neurosci. 1995 Jul;15(7 Pt 1):4868-74. doi: 10.1523/JNEUROSCI.15-07-04868.1995.

Abstract

We have examined the responses of 141 layer VI cells in the feline visual cortex. Within this group we compared the responses of a subpopulation of cells checked for connectivity by electrical stimulation in the dLGN and the visual claustrum. The antidromically identified corticogeniculate projecting cells had relatively short receptive fields, as judged from length response curves, measured quantitatively, and were located at the "short" end of the receptive field length spectrum seen in the general population. Of the 17 corticogeniculate projecting cells, 71% were S type cells, which were typically monocular and directionally selective, with relatively long latencies following electrical stimulation. The remaining 29% were C type cells, also directionally selective, but with a wider spread of ocular dominance preferences and shorter latencies following electrical stimulation. S and C type subpopulations did not differ in their receptive field lengths. The mean receptive field length for this subpopulation was 2.2 degrees +/- 0.27, the shortest field being 1 degrees and the longest 5 degrees. The five layer VI cells activated by electrical stimulation from electrodes within the dorsocaudal (visual) claustrum all had much longer receptive field lengths than the corticogeniculate population, often 10 degrees or longer and were monocular and directionally selective S type cells. These data indicate that the information carried in the corticogeniculate stream (and that from layer VI directly to layer IV carried by axon collaterals) is relatively tightly focused in spatial terms whilst the less spatially focused, long receptive field output from layer VI projects to the claustrum.

摘要

我们研究了猫视觉皮层中141个VI层细胞的反应。在这一组细胞中,我们比较了通过电刺激在背侧膝状体核(dLGN)和视觉屏状核中检查其连接性的一个亚群细胞的反应。从定量测量的长度反应曲线判断,经逆向鉴定的皮质膝状体投射细胞具有相对较短的感受野,并且位于一般群体所见感受野长度谱的“短”端。在17个皮质膝状体投射细胞中,71%是S型细胞,它们通常是单眼且具有方向选择性,电刺激后潜伏期相对较长。其余29%是C型细胞,同样具有方向选择性,但眼优势偏好分布更广,电刺激后潜伏期较短。S型和C型亚群在感受野长度上没有差异。该亚群的平均感受野长度为2.2度±0.27度,最短的感受野为1度,最长的为5度。由背尾侧(视觉)屏状核内电极的电刺激激活的5个VI层细胞,其感受野长度都比皮质膝状体群体长得多,通常为10度或更长,并且是单眼且具有方向选择性的S型细胞。这些数据表明,皮质膝状体通路中携带的信息(以及由轴突侧支从VI层直接传递到IV层的信息)在空间方面相对集中,而VI层输出的空间聚焦性较差、感受野长的信息投射到屏状核。

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