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猕猴外侧膝状核中神经元的方向偏好

Orientation bias of neurons in the lateral geniculate nucleus of macaque monkeys.

作者信息

Smith E L, Chino Y M, Ridder W H, Kitagawa K, Langston A

机构信息

College of Optometry, University of Houston, TX 77204-6052.

出版信息

Vis Neurosci. 1990 Dec;5(6):525-45. doi: 10.1017/s0952523800000699.

Abstract

The purpose of this investigation was to analyze the influence of stimulus orientation on the responses of individual neurons in the monkey's lateral geniculate nucleus (LGN). Our specific goals were to assess the prevalence and the degree of orientation tuning in the monkey LGN and to determine if the preferred stimulus orientations of LGN neurons varied as a function of receptive-field position. The primary motivation for this research was to gain insight into the receptive-field configuration of LGN neurons and consequently into the neural mechanisms which determine the spatial organization of LGN receptive fields in primates. In both the parvocellular and magnocellular layers, the responses of the majority of individual neurons to sine-wave gratings varied as a function of stimulus orientation. The influence of stimulus orientation was, however, highly dependent on the spatial characteristics of the stimulus; the greatest degree of orientation bias was observed for spatial frequencies higher than the cell's optimal spatial frequency. On a population basis, the degree of orientation bias was similar for all major classes of LGN neurons (e.g. ON vs. OFF center; parvocellular vs. magnocellular) and did not vary systematically with receptive-field eccentricity. At a given receptive-field location, LGN neurons, particularly cells in the parvocellular laminae, tended to prefer either radially oriented stimuli or stimuli oriented more horizontally than their polar axis. Our analyses of the orientation-dependent changes in spatial-frequency response functions, which was based on the Soodak et al., (1987; Soodak, 1986) two-dimensional, difference-of-Gaussian receptive-field model, suggested that the orientation bias in LGN neurons was due to an elongation of the receptive-field center mechanism which in some cases appeared to consist of multiple subunits. Direct comparisons of the orientation-tuning characteristics of LGN cells and their retinal inputs (S potentials) indicated that the orientation bias in the monkey LGN reflects primarily the functional properties of individual retinal ganglion cells. We conclude that orientation sensitivity is a significant property of subcortical neurons in the primate's geniculo-cortical pathway.

摘要

本研究的目的是分析刺激方向对猴外侧膝状体核(LGN)中单个神经元反应的影响。我们的具体目标是评估猴LGN中方向调谐的普遍性和程度,并确定LGN神经元的偏好刺激方向是否随感受野位置而变化。这项研究的主要动机是深入了解LGN神经元的感受野结构,进而了解决定灵长类动物LGN感受野空间组织的神经机制。在小细胞层和大细胞层中,大多数单个神经元对正弦波光栅的反应随刺激方向而变化。然而,刺激方向的影响高度依赖于刺激的空间特征;在高于细胞最佳空间频率的空间频率下,观察到最大程度的方向偏差。从总体来看,LGN所有主要类型的神经元(如ON中心与OFF中心;小细胞与大细胞)的方向偏差程度相似,且不随感受野离心率系统变化。在给定的感受野位置,LGN神经元,尤其是小细胞层中的细胞,倾向于偏好径向取向的刺激或比其极轴更水平取向的刺激。我们基于Soodak等人(1987年;Soodak,1986年)的二维高斯差分感受野模型,对空间频率反应函数中方向依赖变化的分析表明,LGN神经元的方向偏差是由于感受野中心机制的伸长,在某些情况下,该机制似乎由多个亚单位组成。LGN细胞与其视网膜输入(S电位)的方向调谐特征的直接比较表明,猴LGN中的方向偏差主要反映了单个视网膜神经节细胞的功能特性。我们得出结论,方向敏感性是灵长类动物膝状体-皮质通路中皮质下神经元的一个重要特性。

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