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早期视觉皮层中交叉方位抑制的时间进程。

Time course of cross-orientation suppression in the early visual cortex.

作者信息

Kimura Rui, Ohzawa Izumi

机构信息

Graduate School of Engineering Science, Osaka University, Toyonaka, Osaka, Japan.

出版信息

J Neurophysiol. 2009 Mar;101(3):1463-79. doi: 10.1152/jn.90681.2008. Epub 2008 Dec 17.

Abstract

Responses of a visual neuron to optimally oriented stimuli can be suppressed by a superposition of another grating with a different orientation. This effect is known as cross-orientation suppression. However, it is still not clear whether the effect is intracortical in origin or a reflection of subcortical processes. To address this issue, we measured spatiotemporal responses to a plaid pattern, a superposition of two gratings, as well as to individual component gratings (optimal and mask) using a subspace reverse-correlation method. Suppression for the plaid was evaluated by comparing the response to that for the optimal grating. For component stimuli, excitatory and negative responses were defined as responses more positive and negative, respectively, than that to a blank stimulus. The suppressive effect for plaids was observed in the vast majority of neurons. However, only approximately 30% of neurons showed the negative response to mask-only gratings. The magnitudes of negative responses to mask-only stimuli were correlated with the degree of suppression for plaid stimuli. Comparing the latencies, we found that the suppression for the plaids starts at about the same time or slightly later than the response onset for the optimal grating and reaches its maximum at about the same time as the peak latency for the mask-only grating. Based on these results, we propose that in addition to the suppressive effect originating at the subcortical stage, delayed suppressive signals derived from the intracortical networks act on the neuron to generate cross-orientation suppression.

摘要

视觉神经元对最佳取向刺激的反应会被另一个具有不同取向的光栅叠加所抑制。这种效应被称为交叉取向抑制。然而,这种效应是起源于皮层内还是皮层下过程的反映仍不清楚。为了解决这个问题,我们使用子空间反向相关方法测量了对格子图案(两个光栅的叠加)以及单个成分光栅(最佳光栅和掩蔽光栅)的时空反应。通过将对格子图案的反应与对最佳光栅的反应进行比较来评估对格子图案的抑制。对于成分刺激,兴奋性反应和负性反应分别定义为比空白刺激的反应更正和更负的反应。在绝大多数神经元中都观察到了对格子图案的抑制效应。然而,只有大约30%的神经元对仅掩蔽光栅表现出负性反应。对仅掩蔽刺激的负性反应幅度与对格子图案刺激的抑制程度相关。比较潜伏期,我们发现对格子图案的抑制大约在与最佳光栅反应开始相同的时间或稍晚开始,并在与仅掩蔽光栅的峰值潜伏期大致相同的时间达到最大值。基于这些结果,我们提出,除了起源于皮层下阶段的抑制效应外,来自皮层内网络的延迟抑制信号作用于神经元以产生交叉取向抑制。

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