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视网膜输入汇聚到视皮层细胞:II. 对由外侧膝状体双突触兴奋的细胞的研究。

Convergence of retinal inputs onto visual cortical cells: II. A study of the cells disynaptically excited from the lateral geniculate body.

作者信息

Toyama K, Kimura M, Shiida T, Takeda T

出版信息

Brain Res. 1977 Dec 2;137(2):221-31. doi: 10.1016/0006-8993(77)90335-3.

Abstract

Spike discharges were recorded extracellularly from cells located in the superficial layer of cat's visual cortex. These cells were disynaptically excited and trisynaptically inhibited from the lateral geniculate cells. The vast majority of them responded to stationary and moving light stimuli. Their ON and OFF responses to a flash of light slit consisted of three components: (1) initial excitation, (2) depression and (3) later rebound. The three components were evoked from a broad area of the retinal receptive field. In one group of these cells, exploration of the receptive field with light slits of different lengths revealed a strong depressant zone at one or both ends of the excitatory receptive area, the characteristics property of 'hypercomplex' cell of Hubel and Wiesel. Another population of cells, however, did not show such length-specificity, and apparently correspond to 'complex' cell. In both groups of cells electrical stimulation at the excitatory receptive area produced a sequence of excitation, depression and later rebound, but only depression was evoked from the depressant zones. The latency of the excitation (6 msec) and the depression (7 msec) are in accordance with the view that the excitation is transmitted through disynaptic pathway and the depression through trisynaptic pathway after being mediated by the lateral geniculate cells.

摘要

从猫视觉皮层表层的细胞中细胞外记录到了锋电位发放。这些细胞受到外侧膝状体细胞的双突触兴奋和三突触抑制。它们中的绝大多数对静止和移动的光刺激都有反应。它们对闪光狭缝的开和关反应由三个成分组成:(1) 初始兴奋,(2) 抑制,以及(3) 随后的反弹。这三个成分是从视网膜感受野的一个广泛区域诱发出来的。在其中一组这样的细胞中,用不同长度的光狭缝探测感受野时,在兴奋感受区的一端或两端发现了一个强抑制区,这是Hubel和Wiesel的“超复杂”细胞的特征属性。然而,另一群细胞并没有表现出这种长度特异性,显然对应于“复杂”细胞。在这两组细胞中,在兴奋感受区进行电刺激都会产生一系列的兴奋、抑制和随后的反弹,但只有在抑制区才会诱发抑制。兴奋的潜伏期(6毫秒)和抑制的潜伏期(7毫秒)与这样一种观点一致,即兴奋是通过双突触通路传递的,而抑制是在由外侧膝状体细胞介导后通过三突触通路传递的。

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