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表层超复杂细胞感受野中兴奋区和抑制区的空间范围。

The spatial extent of excitatory and inhibitory zones in the receptive field of superficial layer hypercomplex cells.

作者信息

Sillito A M

出版信息

J Physiol. 1977 Dec;273(3):791-803. doi: 10.1113/jphysiol.1977.sp012124.

Abstract
  1. An investigation has been made of the extent of inhibitory and excitatory components in the receptive field of superficial layer hypercomplex cells in the cat's striate cortex and the relation of the components to the length preference exhibited by these cells.2. Maximal responses were produced by an optimal length stimulus moving through a restricted region of the receptive field. The length of this receptive field region was less than the total length of the excitatory zone as mapped with a very short slit. Slits of similar length to the excitatory zone produced a smaller response than an optimal length slit.3. An increase of slit length so that it passed over receptive field regions either side of the excitatory zone resulted in an elimination of the response. When background discharge levels were increased by the iontophoretic application of D, L-homocysteic acid slits of this length were observed to produce a suppression of the resting discharge as they passed over the receptive field. They did not modify the resting discharge level when it was induced by the iontophoretic application of the GABA antagonist bicuculline. This data is taken to indicate that long slits activate a powerful post-synaptic inhibitory input to the cell.4. Maximal inhibitory effects were only observed if the testing slit passed over the receptive field centre. That is slits with a gap positioned midway along their length so as to exclude the optimal excitatory response region surprisingly tended to produce excitatory effects rather than the expected inhibitory effects. It appears that simultaneous stimulation of the receptive field centre is a precondition for the inhibitory effect of stimulation of regions either side of the excitatory zone to be activated.5. It is suggested that the interneurones mediating the inhibitory input to the superficial layer hypercomplex cells are driven both by cells in adjacent hypercolumns with receptive fields spatially displaced to either side of the excitatory zone and by cells in the same column, optimal inhibitory effects only being achieved when both sets of input to the interneurone are activated.
摘要
  1. 对猫纹状皮层浅层超复杂细胞感受野中抑制性和兴奋性成分的程度,以及这些成分与这些细胞表现出的长度偏好之间的关系进行了研究。

  2. 最佳长度的刺激物在感受野的一个受限区域移动时会产生最大反应。这个感受野区域的长度小于用非常短的狭缝映射出的兴奋区的总长度。与兴奋区长度相似的狭缝产生的反应比最佳长度的狭缝小。

  3. 增加狭缝长度,使其越过兴奋区两侧的感受野区域,会导致反应消失。当通过离子导入法施加D,L-高半胱氨酸使背景放电水平升高时,观察到这种长度的狭缝在越过感受野时会抑制静息放电。当通过离子导入法施加GABA拮抗剂荷包牡丹碱诱导静息放电水平时,它们不会改变静息放电水平。这些数据表明长狭缝激活了对细胞的强大突触后抑制性输入。

  4. 只有当测试狭缝越过感受野中心时才会观察到最大抑制作用。也就是说,狭缝中间有一个间隙,其长度位于中间位置,以排除最佳兴奋反应区域,令人惊讶的是,这样的狭缝往往会产生兴奋作用,而不是预期的抑制作用。看来,同时刺激感受野中心是激活兴奋区两侧区域刺激的抑制作用的前提条件。

  5. 有人提出,介导对浅层超复杂细胞抑制性输入的中间神经元,既受到相邻超柱中感受野在空间上向兴奋区两侧移位的细胞的驱动,也受到同一柱中细胞的驱动,只有当对中间神经元的两组输入都被激活时,才能实现最佳抑制作用。

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Receptive fields of simple cells in the cat striate cortex.猫纹状皮层中简单细胞的感受野。
J Physiol. 1973 May;231(1):31-60. doi: 10.1113/jphysiol.1973.sp010218.
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Responses of complex cells in the visual cortex of the cat as a function of the length of moving slits.
Brain Res. 1976 Nov 5;116(2):205-16. doi: 10.1016/0006-8993(76)90900-8.

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Vertical organization in the visual cortex (area 17) in the cat.
Exp Brain Res. 1974;21(3):315-36. doi: 10.1007/BF00235750.
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