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超越脉冲抑制:α 节律调节清醒静息状态下神经活动的衰减和放大。

Beyond pulsed inhibition: Alpha oscillations modulate attenuation and amplification of neural activity in the awake resting state.

机构信息

Institute of Science and Technology Austria, Am Campus 1, 3400 Klosterneuburg, Austria; Department of Biomedical Sciences, University of Padova, Via Ugo Bassi 58B, 35131 Padova, Italy.

Departamento de Fisica, Universitade Federal do Ceara, Fortaleza 60451-970, Ceara, Brazil; PMMH, ESPCI, 7 quai St. Bernard, 75005 Paris, France.

出版信息

Cell Rep. 2023 Oct 31;42(10):113162. doi: 10.1016/j.celrep.2023.113162. Epub 2023 Sep 29.

Abstract

Alpha oscillations are a distinctive feature of the awake resting state of the human brain. However, their functional role in resting-state neuronal dynamics remains poorly understood. Here we show that, during resting wakefulness, alpha oscillations drive an alternation of attenuation and amplification bouts in neural activity. Our analysis indicates that inhibition is activated in pulses that last for a single alpha cycle and gradually suppress neural activity, while excitation is successively enhanced over a few alpha cycles to amplify neural activity. Furthermore, we show that long-term alpha amplitude fluctuations-the "waxing and waning" phenomenon-are an attenuation-amplification mechanism described by a power-law decay of the activity rate in the "waning" phase. Importantly, we do not observe such dynamics during non-rapid eye movement (NREM) sleep with marginal alpha oscillations. The results suggest that alpha oscillations modulate neural activity not only through pulses of inhibition (pulsed inhibition hypothesis) but also by timely enhancement of excitation (or disinhibition).

摘要

阿尔法振荡是人类大脑清醒静息状态的一个显著特征。然而,它们在静息态神经元动力学中的功能作用仍知之甚少。在这里,我们表明,在静息觉醒期间,阿尔法振荡驱动神经活动的衰减和放大回合交替。我们的分析表明,抑制作用以持续一个阿尔法周期的脉冲形式被激活,逐渐抑制神经活动,而兴奋作用则在几个阿尔法周期中逐渐增强,以放大神经活动。此外,我们还表明,长期的阿尔法幅度波动——“盈亏”现象——是一种衰减-放大机制,其活动率的“衰减”阶段呈幂律衰减。重要的是,我们在具有边缘阿尔法振荡的非快速眼动(NREM)睡眠中没有观察到这种动力学。结果表明,阿尔法振荡不仅通过抑制脉冲(脉冲抑制假说),而且通过及时增强兴奋(或去抑制)来调节神经活动。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4b6a/10842118/549469f30495/nihms-1941866-f0001.jpg

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