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视觉皮层振荡反应的同步与双眼竞争中的感知相关。

Synchronization of oscillatory responses in visual cortex correlates with perception in interocular rivalry.

作者信息

Fries P, Roelfsema P R, Engel A K, König P, Singer W

机构信息

Max-Planck-Institut für Hirnforschung, Deutschordenstrasse 46, 60528 Frankfurt, Germany.

出版信息

Proc Natl Acad Sci U S A. 1997 Nov 11;94(23):12699-704. doi: 10.1073/pnas.94.23.12699.

Abstract

In subjects suffering from early onset strabismus, signals conveyed by the two eyes are not perceived simultaneously but in alternation. We exploited this phenomenon of interocular suppression to investigate the neuronal correlate of binocular rivalry in primary visual cortex of awake strabismic cats. Monocularly presented stimuli that were readily perceived by the animal evoked synchronized discharges with an oscillatory patterning in the gamma-frequency range. Upon dichoptic stimulation, neurons responding to the stimulus that continued to be perceived increased the synchronicity and the regularity of their oscillatory patterning while the reverse was true for neurons responding to the stimulus that was no longer perceived. These differential changes were not associated with modifications of discharge rate, suggesting that at early stages of visual processing the degree of synchronicity rather than the amplitude of responses determines which signals are perceived and control behavioral responses.

摘要

在患有早发性斜视的受试者中,两只眼睛传递的信号并非同时被感知,而是交替被感知。我们利用这种双眼抑制现象来研究清醒斜视猫初级视觉皮层中双眼竞争的神经元关联。单眼呈现的、动物易于感知的刺激会诱发同步放电,并在伽马频率范围内呈现振荡模式。在双眼刺激时,对持续被感知的刺激做出反应的神经元增加了其振荡模式的同步性和规律性,而对不再被感知的刺激做出反应的神经元则情况相反。这些差异变化与放电率的改变无关,这表明在视觉处理的早期阶段,同步程度而非反应幅度决定了哪些信号被感知并控制行为反应。

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