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猫上丘浅层的直接和间接视觉输入:电诱发电位的电流源密度分析

Direct and indirect visual inputs to superficial layers of cat superior colliculus: a current source-density analysis of electrically evoked potentials.

作者信息

Freeman B, Singer W

出版信息

J Neurophysiol. 1983 May;49(5):1075-91. doi: 10.1152/jn.1983.49.5.1075.

Abstract
  1. The spatiotemporal pattern of visual inputs to the stratum griseum superficiale (SGS) and stratum opticum (SO) of the cat superior colliculus (SC) has been determined by an analysis of the current sinks occurring during postsynaptic activity following stimulation of each optic nerve (ON) and the optic chiasm (OX). Electrolytic lesions were used to determine the locations of the five major current sinks. 2. Direct SC afferents from the contralateral ON induced three current sinks whose maxima were located a) in the upper part of the SGS, b) in the middle part of the SGS, and c) in the lower part of the SGS and upper part of the SO. These three sinks were generated by three afferent fiber groups conducting in the optic nerve with modal and maximum velocities, respectively, of a) 4 and 5 m/s (slow W-group), b) 7 and 10 m/s (fast W-group), and c) 32 and 43 m/s (Y-group). 3. Indirect SC inputs from the contralateral ON via the ipsilateral visual cortex were identified by comparing the pattern of current sinks generated by OX stimulation before and after cortical ablation. The most prominent and fastest indirect sink (Y-group) was found in ;the lower half of the SGS and uppermost part of the SO. Low-amplitude, long-latency indirect current sinks were also found in the upper and lower thirds of the SGS. 4. The principal conclusions of this report are first, that the SGS is divisible into three physiologic regions according to the spatiotemporal pattern of excitatory synaptic activity generated by the afferent inputs and second, that there is a spatiotemporal matching of the direct collicular afferents from the contralateral retina and the indirect retinal afferents relaying through the ipsilateral visual cortex.
摘要
  1. 通过分析刺激每只视神经(ON)和视交叉(OX)后突触后活动期间出现的电流沉,确定了猫上丘(SC)浅层灰质(SGS)和视层(SO)视觉输入的时空模式。用电解损伤法确定了五个主要电流沉的位置。2. 来自对侧ON的直接SC传入纤维诱导出三个电流沉,其最大值分别位于:a)SGS上部,b)SGS中部,c)SGS下部和SO上部。这三个电流沉由分别以模态速度和最大速度在视神经中传导的三组传入纤维产生,a)4和5米/秒(慢W组),b)7和10米/秒(快W组),c)32和43米/秒(Y组)。3. 通过比较皮质切除前后OX刺激产生的电流沉模式,确定了来自对侧ON经同侧视皮质的间接SC输入。最显著和最快的间接电流沉(Y组)位于SGS下半部和SO最上部。在SGS的上三分之一和下三分之一也发现了低幅度、长潜伏期的间接电流沉。4. 本报告的主要结论是,首先,根据传入输入产生的兴奋性突触活动的时空模式,SGS可分为三个生理区域;其次,对侧视网膜的直接丘系传入纤维与经同侧视皮质中继的间接视网膜传入纤维之间存在时空匹配。

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