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猕猴初级视觉皮层(V1)神经元的视觉空间特征

Visual spatial characterization of macaque V1 neurons.

作者信息

Sceniak M P, Hawken M J, Shapley R

机构信息

The Salk Institute, La Jolla, California 92037, USA.

出版信息

J Neurophysiol. 2001 May;85(5):1873-87. doi: 10.1152/jn.2001.85.5.1873.

Abstract

This study characterizes the spatial organization of excitation and inhibition that influences the visual responses of neurons in macaque monkey's primary visual cortex (V1). To understand the spatial extent of excitatory and inhibitory influences on V1 neurons, we performed area-summation experiments with suprathreshold contrast stimulation. The extent of spatial summation and the magnitude of surround suppression were estimated quantitatively by analyzing the spatial summation experiments with a difference of Gaussians (DOG) model. The average extent of spatial summation is approximately the same across layers except for layer 6 cells, which tend to sum more extensively than cells in the other layers. On average, the extent of length and width summation is approximately equal. Across the population, surround suppression is greatest in layer 4B and weakest in layer 6. Estimates of summation and suppression are compared for the DOG (subtractive) model and a normalization (divisive) model. The two models yield quantitatively similar estimates of the extent of excitation and inhibition. However, the normalization (divisive) model predicts weaker surround strength than the DOG model.

摘要

本研究描述了影响猕猴初级视觉皮层(V1)中神经元视觉反应的兴奋和抑制的空间组织。为了了解对V1神经元的兴奋性和抑制性影响的空间范围,我们采用阈上对比度刺激进行了面积总和实验。通过用高斯差分(DOG)模型分析空间总和实验,定量估计了空间总和的范围和周边抑制的幅度。除了第6层细胞外,各层的空间总和平均范围大致相同,第6层细胞的总和范围往往比其他层的细胞更广泛。平均而言,长度和宽度总和的范围大致相等。在整个群体中,第4B层的周边抑制最强,第6层最弱。比较了DOG(减法)模型和归一化(除法)模型的总和与抑制估计。这两种模型对兴奋和抑制范围的估计在数量上相似。然而,归一化(除法)模型预测的周边强度比DOG模型弱。

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