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被动眼位变化对猫视网膜膝状体传递的影响。

Effect of passive eye position changes on retinogeniculate transmission in the cat.

作者信息

Lal R, Friedlander M J

机构信息

Department of Physiology and Biophysics, University of Alabama, Birmingham 35294.

出版信息

J Neurophysiol. 1990 Mar;63(3):502-22. doi: 10.1152/jn.1990.63.3.502.

Abstract
  1. Extracellular recordings were made from single neurons in layer A of the left dorsal lateral geniculate nucleus (LGNd) of anesthetized and paralyzed adult cats. Responses to retinotopically identical visual stimuli (presented through the right eye) were recorded at several positions of the left eye in its orbit. Visual stimuli consisted of drifting sinusoidal gratings of optimal temporal and spatial frequencies at twice threshold contrast. Visual stimulation of the left eye was blocked by a variety of methods, including intravitreal injection of tetrodotoxin (TTX). The change in position of the left eye was achieved by passive movements in a randomized and interleaved fashion. Of 237 neurons studied, responses were obtained from 143 neurons on 20-100 trials of identical visual stimulation at each of six eye positions. Neurons were classified as X- or Y- on the basis of a standard battery of physiological tests (primarily linearity of spatial summation and response latency to electrical stimulation of the optic chiasm). 2. The effect of eye position on the visual response of the 143 neurons was analyzed with respect to the number of action potentials elicited and the peak firing rate. Fifty-seven (40%) neurons had a significant effect [by one-factor repeated-measure analysis of variance (ANOVA), P less than 0.05] of eye position on the visual response by either criterion (number of action potentials or peak firing rate). Of these 57 neurons, 47 had a significant effect (P less than 0.05) with respect to the number of action potentials and 23 had a significant effect (P less than 0.05) by both criteria. Thus the permissive measure by either criterion and the conservative measure by both criteria resulted in 40% and 16%, respectively, of all neurons' visual responses being significantly affected by eye position. 3. For the 47 neurons with a significant effect of eye position (number of action potentials criterion), a trend analysis of eye position versus visual response showed a linear trend (P less than 0.05) for 9 neurons, a quadratic trend (P less than 0.05) for 32 neurons, and no significant trend for the 6 remaining neurons. The trends were approximated with linear and nonlinear gain fields (range of eye position change over which the visual response was modulated). The gain fields of individual neurons were compared by measuring the normalized gain (change in neuronal response per degree change of eye position). The mean normalized gain for the 47 neurons was 4.3. 4. The nonlinear gain fields were generally symmetric with respect to nasal versus temporal changes in eye position.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 对麻醉并瘫痪的成年猫左侧背外侧膝状核(LGNd)A层的单个神经元进行细胞外记录。在左眼眼眶的几个位置记录对视网膜拓扑结构相同的视觉刺激(通过右眼呈现)的反应。视觉刺激由具有最佳时间和空间频率、对比度为两倍阈值的漂移正弦光栅组成。通过多种方法阻断左眼的视觉刺激,包括玻璃体内注射河豚毒素(TTX)。左眼位置的改变通过随机交错的被动运动实现。在研究的237个神经元中,在六个眼位中的每个位置对相同视觉刺激进行20 - 100次试验后,从143个神经元获得了反应。根据一系列标准生理测试(主要是空间总和的线性度和对视交叉电刺激的反应潜伏期)将神经元分类为X型或Y型。

  2. 针对143个神经元,从引发的动作电位数量和峰值放电率方面分析眼位对视觉反应的影响。五十七(40%)个神经元的眼位对视觉反应有显著影响[通过单因素重复测量方差分析(ANOVA),P小于0.05],依据任一标准(动作电位数量或峰值放电率)。在这57个神经元中,47个在动作电位数量方面有显著影响(P小于0.05),23个依据两个标准都有显著影响(P小于0.05)。因此,依据任一标准的宽松测量和依据两个标准的保守测量分别导致所有神经元的视觉反应中有40%和16%受到眼位的显著影响。

  3. 对于47个眼位有显著影响(动作电位数量标准)的神经元,眼位与视觉反应的趋势分析显示,9个神经元呈线性趋势(P小于0.05),32个神经元呈二次趋势(P小于0.05),其余6个神经元无显著趋势。这些趋势用线性和非线性增益场(视觉反应被调制的眼位变化范围)进行近似。通过测量归一化增益(眼位每变化一度时神经元反应的变化)比较单个神经元的增益场。这47个神经元的平均归一化增益为4.3。

  4. 非线性增益场通常关于眼位的鼻侧与颞侧变化对称。(摘要截于400字)

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