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视觉皮层中的兴奋-抑制网络:心理物理学证据。

Excitatory-inhibitory network in the visual cortex: psychophysical evidence.

作者信息

Adini Y, Sagi D, Tsodyks M

机构信息

Department of Neurobiology, Brain Research, The Weizmann Institute of Science, Rehovot 76100, Israel.

出版信息

Proc Natl Acad Sci U S A. 1997 Sep 16;94(19):10426-31. doi: 10.1073/pnas.94.19.10426.

Abstract

At early stages in visual processing cells respond to local stimuli with specific features such as orientation and spatial frequency. Although the receptive fields of these cells have been thought to be local and independent, recent physiological and psychophysical evidence has accumulated, indicating that the cells participate in a rich network of local connections. Thus, these local processing units can integrate information over much larger parts of the visual field; the pattern of their response to a stimulus apparently depends on the context presented. To explore the pattern of lateral interactions in human visual cortex under different context conditions we used a novel chain lateral masking detection paradigm, in which human observers performed a detection task in the presence of different length chains of high-contrast-flanked Gabor signals. The results indicated a nonmonotonic relation of the detection threshold with the number of flankers. Remote flankers had a stronger effect on target detection when the space between them was filled with other flankers, indicating that the detection threshold is caused by dynamics of large neuronal populations in the neocortex, with a major interplay between excitation and inhibition. We considered a model of the primary visual cortex as a network consisting of excitatory and inhibitory cell populations, with both short- and long-range interactions. The model exhibited a behavior similar to the experimental results throughout a range of parameters. Experimental and modeling results indicated that long-range connections play an important role in visual perception, possibly mediating the effects of context.

摘要

在视觉处理的早期阶段,细胞会对具有特定特征(如方向和空间频率)的局部刺激做出反应。尽管这些细胞的感受野一直被认为是局部且独立的,但最近积累的生理和心理物理学证据表明,这些细胞参与了一个丰富的局部连接网络。因此,这些局部处理单元可以在视野的更大区域整合信息;它们对刺激的反应模式显然取决于所呈现的背景。为了探究在不同背景条件下人类视觉皮层中的侧向相互作用模式,我们使用了一种新颖的链式侧向掩蔽检测范式,其中人类观察者在存在不同长度的高对比度侧翼加博尔信号链的情况下执行检测任务。结果表明检测阈值与侧翼数量之间存在非单调关系。当远程侧翼之间的空间被其他侧翼填满时,它们对目标检测的影响更强,这表明检测阈值是由新皮层中大量神经元群体的动态变化引起的,兴奋和抑制之间存在主要的相互作用。我们考虑了一个将初级视觉皮层视为由兴奋性和抑制性细胞群体组成的网络的模型,该模型具有短程和长程相互作用。在一系列参数范围内,该模型表现出与实验结果相似的行为。实验和建模结果表明,长程连接在视觉感知中起着重要作用,可能介导背景的影响。

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