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Temporal interactions in the cat visual system. I. Orientation- selective suppression in the visual cortex

机译:猫视觉系统中的时间交互。 I.视皮层的定向选择性抑制

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摘要

The perception of a visual contour depends on the spatial and temporal context in which it is viewed. Interactions between visual contours are believed to underlie a wide range of perceptual phenomena, including geometric illusions and aftereffects, contrast adaptation, and visual masking. The physiological mechanisms that might underlie such interactions were studied in the visual cortex of the cat by recording responses of single neurons to pairs of brief stationary stimuli that were separated in time. The results revealed a long-lasting, orientation-selective suppression, termed “paired-pulse suppression,” which was strongest at the cell's preferred orientation, but which was more broadly tuned for orientation than the excitatory response of the cell. Although the strength and duration of the suppression varied widely, some degree of response reduction was present in most cells studied. The function of this suppression may be to regulate the gain with which visual inputs are transmitted to cortical neurons, thus preventing response saturation and positive feedback.
机译:视觉轮廓的感知取决于在其中观看的空间和时间背景。视觉轮廓之间的相互作用被认为是广泛的感知现象的基础,包括几何幻觉和后效应,对比度适应和视觉掩盖。通过记录单个神经元对时间上分离的短暂静止刺激对的响应,在猫的视觉皮层中研究了可能构成此类相互作用的生理机制。结果显示了一种持久的定向选择性抑制作用,称为“成对脉冲抑制”,在细胞的首选定向作用下最强,但其定向作用比细胞的兴奋性反应更广泛。尽管抑制的强度和持续时间变化很大,但在大多数研究的细胞中都存在一定程度的反应降低。这种抑制的功能可能是调节将视觉输入传输到皮层神经元的增益,从而防止响应饱和和正反馈。

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