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猴子视觉皮层细胞在人工盲点的知觉填充过程中的反应。

Responses of cells in monkey visual cortex during perceptual filling-in of an artificial scotoma.

作者信息

De Weerd P, Gattass R, Desimone R, Ungerleider L G

机构信息

Laboratory of Psychology and Psychopathology, NIMH, Bethesda, Maryland 20892, USA.

出版信息

Nature. 1995 Oct 26;377(6551):731-4. doi: 10.1038/377731a0.

Abstract

When we view a scene through one eye, we typically do not see the scotomas created by the optic disc and the blood vessels overlying the retinal surface. Similarly, when a texture field containing a hole is steadily viewed in peripheral vision (artificial scotoma), the hole appears to fill in with the surrounding texture in a matter of seconds, demonstrating that the visual system fills in information across regions where no information is available. Here we show that, in monkeys viewing a similar texture field with a hole, the responses of extrastriate visual neurons with receptive fields covering the hole increase gradually to a level comparable to that elicited by the same texture without a hole. The time course of these dynamic changes in activity parallels the time course of perceived filling-in of the hole by human observers, suggesting that this process mediates perceptual filling-in.

摘要

当我们用一只眼睛观察一个场景时,通常不会看到由视盘和覆盖在视网膜表面的血管所造成的盲点。同样,当在外周视觉中稳定观察一个包含孔洞的纹理区域(人工盲点)时,孔洞在几秒钟内似乎会被周围的纹理填满,这表明视觉系统会在没有信息的区域填充信息。在这里,我们表明,在猴子观察一个带有孔洞的类似纹理区域时,其感受野覆盖该孔洞的纹外视觉神经元的反应会逐渐增加到与没有孔洞的相同纹理所引发的反应水平相当。这些活动动态变化的时间进程与人类观察者感知到的孔洞填充时间进程相似,这表明这个过程介导了知觉填充。

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