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阿尔法功率预测双稳态知觉的持续时间。

Alpha Power Predicts Persistence of Bistable Perception.

机构信息

Dept. Neurology, Massachusetts General Hospital, Harvard Medical School, Boston, MA, USA.

Dept. Sleep and Cognition, Netherlands Institute for Neuroscience, Amsterdam, The Netherlands.

出版信息

Sci Rep. 2017 Jul 12;7(1):5208. doi: 10.1038/s41598-017-05610-8.

Abstract

Perception is strongly affected by the intrinsic state of the brain, which controls the propensity to either maintain a particular perceptual interpretation or switch to another. To understand the mechanisms underlying the spontaneous drive of the brain to explore alternative interpretations of unchanging stimuli, we repeatedly recorded high-density EEG after normal sleep and after sleep deprivation while participants observed a Necker cube image and reported the durations of the alternating representations of their bistable perception. We found that local alpha power around the parieto-occipital sulcus within the first second after the emergence of a perceptual representation predicted the fate of its duration. An experimentally induced increase in alpha power by means of sleep deprivation increased the average duration of individual representations. Taken together, these findings show that high alpha power promotes the stability of a perceptual representation and suppresses switching to the alternative. The observations support the hypothesis that synchronization of alpha oscillations across a wide neuronal network promotes the maintenance and stabilization of its current perceptual representation. Elevated alpha power could also be key to the poorly understood cognitive deficits, that typically accompany sleep deprivation, such as the loss of mental flexibility and lapses of responsiveness.

摘要

感知受到大脑内在状态的强烈影响,大脑控制着维持特定感知解释或切换到另一种解释的倾向。为了了解大脑自发探索不变刺激的替代解释的机制,我们在正常睡眠和睡眠剥夺后重复记录高密度 EEG,同时参与者观察 Necker 立方体图像并报告其双稳态感知的交替表示的持续时间。我们发现,在感知表示出现后的第一秒内,顶枕沟周围的局部 alpha 功率预测了其持续时间的命运。通过睡眠剥夺以实验方式增加 alpha 功率会增加单个表示的平均持续时间。总的来说,这些发现表明高 alpha 功率促进了感知表示的稳定性,并抑制了向替代表示的转换。这些观察结果支持这样一种假设,即跨广泛神经元网络的 alpha 振荡同步促进了其当前感知表示的维持和稳定。升高的 alpha 功率也可能是理解睡眠剥夺伴随的认知缺陷(例如思维灵活性丧失和反应迟钝)的关键。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4c3f/5507912/1ef8b3a8e06a/41598_2017_5610_Fig1_HTML.jpg

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