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视觉皮层中交叉方位抑制的起源

Origins of cross-orientation suppression in the visual cortex.

作者信息

Li Baowang, Thompson Jeffrey K, Duong Thang, Peterson Matthew R, Freeman Ralph D

机构信息

Group in Vision Science, School of Optometry, Helen Wills Neuroscience Institute, University of California, Berkeley, CA 94720-2020, USA.

出版信息

J Neurophysiol. 2006 Oct;96(4):1755-64. doi: 10.1152/jn.00425.2006. Epub 2006 Jul 19.

Abstract

The response of a neuron in striate cortex to an optimally oriented stimulus is suppressed by a superimposed orthogonal stimulus. The neural mechanism underlying this cross-orientation suppression (COS) may arise from intracortical or subcortical processes or from both. Recent studies of the temporal frequency and adaptation properties of COS suggest that depression at thalamo-cortical synapses may be the principal mechanism. To examine the possible role of synaptic depression in relation to COS, we measured the recovery time course of COS. We find it too rapid to be explained by synaptic depression. We also studied potential subcortical processes by measuring single cell contrast response functions for a population of LGN neurons. In general, contrast saturation is a consistent property of LGN neurons. Combined with rectifying nonlinearities in the LGN and spike threshold nonlinearities in visual cortex, contrast saturation in the LGN can account for most of the COS that is observed in the visual cortex.

摘要

纹状皮层中的神经元对最佳取向刺激的反应会被叠加的正交刺激所抑制。这种交叉取向抑制(COS)背后的神经机制可能源于皮层内或皮层下过程,也可能两者皆有。最近对COS的时间频率和适应特性的研究表明,丘脑 - 皮层突触处的抑制可能是主要机制。为了研究突触抑制与COS相关的可能作用,我们测量了COS的恢复时间进程。我们发现它太快了,无法用突触抑制来解释。我们还通过测量一群外侧膝状体(LGN)神经元的单细胞对比度响应函数来研究潜在的皮层下过程。一般来说,对比度饱和是LGN神经元的一个一致特性。结合LGN中的整流非线性和视觉皮层中的峰值阈值非线性,LGN中的对比度饱和可以解释在视觉皮层中观察到的大部分COS。

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