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局部场电位反映猕猴视觉皮层中的知觉抑制。

Local field potential reflects perceptual suppression in monkey visual cortex.

作者信息

Wilke Melanie, Logothetis Nikos K, Leopold David A

机构信息

Max Planck Institute for Biological Cybernetics, Spemannstrasse 38, 72076 Tübingen, Germany.

出版信息

Proc Natl Acad Sci U S A. 2006 Nov 14;103(46):17507-12. doi: 10.1073/pnas.0604673103. Epub 2006 Nov 6.

Abstract

Neurophysiological and functional imaging experiments remain in apparent disagreement on the role played by the earliest stages of the visual cortex in supporting a visual percept. Here, we report electrophysiological findings that shed light on this issue. We monitored neural activity in the visual cortex of monkeys as they reported their perception of a high-contrast visual stimulus that was induced to vanish completely from perception on a subset of trials. We found that the spiking of neurons in cortical areas V1 and V2 was uncorrelated with the perceptual visibility of the target, whereas that in area V4 showed significant perception-related changes. In contrast, power changes in the lower frequency bands (particularly 9-30 Hz) of the local field potential (LFP), collected on the same trials, showed consistent and sustained perceptual modulation in all three areas. In addition, for the gamma frequency range (30-50 Hz), the responses during perceptual suppression of the target were correlated significantly with the responses to its physical removal in all areas, although the modulation magnitude was considerably higher in area V4 than in V1 and V2. These results, taken together, suggest that low-frequency LFP power in early cortical processing is more closely related to the representation of stimulus visibility than is spiking or higher frequency LFP activity.

摘要

神经生理学和功能成像实验在视觉皮层早期阶段对支持视觉感知所起的作用上似乎存在分歧。在此,我们报告了有助于阐明这一问题的电生理研究结果。我们监测了猴子视觉皮层中的神经活动,当它们报告对高对比度视觉刺激的感知时,该刺激在一部分试验中被诱导从感知中完全消失。我们发现,皮层V1和V2区域神经元的放电与目标的感知可见性无关,而V4区域的神经元放电则显示出与感知相关的显著变化。相比之下,在相同试验中采集的局部场电位(LFP)较低频段(特别是9 - 30Hz)的功率变化在所有三个区域均显示出一致且持续的感知调制。此外,对于伽马频率范围(30 - 50Hz),尽管V4区域的调制幅度比V1和V2区域高得多,但在所有区域中,目标感知抑制期间的反应与对其物理移除的反应均显著相关。综合这些结果表明,早期皮层处理中的低频LFP功率比放电或高频LFP活动与刺激可见性的表征更密切相关。

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