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Alpha Oscillations and Feedback Processing in Visual Cortex for Conscious Perception

机译:Visual Cortex中的Alpha振荡和反馈处理以获得意识的感知

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摘要

Variability in perception between individuals may be a consequence of different inherent neural processing speeds. To assess whether alpha oscillations systematically reflect a feedback pacing mechanism for cortical processing during visual perception, comparisons were made between alpha oscillations, visual suppression from TMS, visual evoked responses, and metacontrast masking. Peak alpha oscillation frequencies, measured through scalp EEG recordings, significantly correlated with the optimum latencies for visual suppression from TMS of early visual cortex. Individuals with shorter alpha periods (i.e., higher peak alpha frequencies) processed visual information faster than those with longer alpha periods (i.e., lower peak alpha frequencies). Moreover, peak alpha oscillation periods and optimum TMS visual suppression latencies predicted the latencies of late but not early visual evoked responses. Together, these findings demonstrate an important role of alpha oscillatory and late feedback activity in visual cortex for conscious perception. They also show that the timing for visual awareness varies across individuals, depending on the pace of one's endogenous oscillatory cycling frequency.
机译:个人之间感知的可变性可能是不同固有的神经处理速度的结果。为了评估α振荡是否系统地反映了在视觉感知期间皮质加工的反馈起搏机制,在α振荡,从TMS的视觉抑制,视觉诱发响应和Metacontrast掩蔽之间进行比较。通过SPARP EEG录制测量的峰值α振荡频率与早期视觉皮质的TMS的可视抑制的最佳延迟显着相关。具有较短α时段(即,较高峰值α频率)的个体比具有较长alpha时段(即,较低峰值α频率)更快地处理视觉信息。此外,峰值α振荡周期和最佳TMS视觉抑制延迟预测了晚期但不是早期视觉诱发反应的延迟。这些发现在一起表明了α振荡和晚期反馈活动在视觉皮层中的重要作用,以便有意识地感知。他们还表明,视觉意识的时机因个人而异,根据一个内源性振荡循环频率的速度而变化。

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  • 来源
    《Journal of Cognitive Neuroscience》 |2019年第7期|948-960|共13页
  • 作者

    Ro Tony;

  • 作者单位

    CUNY Grad Ctr New York NY 10016 USA;

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  • 正文语种 eng
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