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Magnetic responses of human visual cortex to illusory contours.

机译:人类视觉皮层对虚幻轮廓的磁响应。

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摘要

To examine the neural mechanism underlying illusory-contour perception, we measured the magnetic responses of the human visual cortex to an abutting-line grating inducing illusory contours (test stimulus) and a non-abutting-line grating (control stimulus) using the technique of magnetoencephalography (MEG). In the initial latency period of 60-80 ms, the MEG response to the test stimulus was nearly identical with that to the control stimulus, but in the subsequent period of 80-150 ms, the former was larger than the latter. The origin of the peak MEG response to the test stimulus was estimated to be in the vicinity of striate cortex/extrastriate visual cortex for two of the four subjects. These results suggest that, in accord with those of the previous electrophysiological and functional magnetic resonance imaging studies, illusory-contour signals are generated in the very early stage(s) of processing in the primate visual cortex.
机译:为了检查虚构轮廓感知的神经机制,我们使用以下方法测量了人类视觉皮层对诱发虚构轮廓的邻接线光栅(测试刺激)和非邻接线光栅(控制刺激)的磁响应。脑磁图(MEG)。在60-80 ms的初始潜伏期中,对测试刺激的MEG响应与对对照刺激的MEG响应几乎相同,但在随后的80-150 ms的周期中,前者大于后者。对于四个受试者中的两个,估计对测试刺激的最大MEG响应的起源是在纹状皮层/硬皮视觉皮层附近。这些结果表明,与先前的电生理学和功能磁共振成像研究一致,在灵长类动物视皮层的处理的非常早期就产生了虚假轮廓信号。

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