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状态相关的阿尔法峰值频率转移:实验证据、潜在机制和功能意义。

State-dependent alpha peak frequency shifts: Experimental evidence, potential mechanisms and functional implications.

机构信息

Institute of Movement and Neurosciences, German Sport University Cologne, Germany.

Centre for Cognitive Neuroscience (CCNS), University of Salzburg, Salzburg, Austria.

出版信息

Neuroscience. 2017 Sep 30;360:146-154. doi: 10.1016/j.neuroscience.2017.07.037. Epub 2017 Jul 22.

Abstract

Neural populations produce complex oscillatory patterns thought to implement brain function. The dominant rhythm in the healthy adult human brain is formed by alpha oscillations with a typical power peak most commonly found between 8 and 12Hz. This alpha peak frequency has been repeatedly discussed as a highly heritable and stable neurophysiological "trait" marker reflecting anatomical properties of the brain, and individuals' general cognitive capacity. However, growing evidence suggests that the alpha peak frequency is highly volatile at shorter time scales, dependent on the individuals' "state". Based on the converging experimental and theoretical results from numerous recent studies, here we propose that alpha frequency variability forms the basis of an adaptive mechanism mirroring the activation level of neural populations which has important functional implications. We here integrate experimental and computational perspectives to shed new light on the potential role played by shifts in alpha peak frequency and discuss resulting implications. We further propose a potential mechanism by which alpha oscillations are regulated in a noisy network of spiking neurons in presence of delayed feedback.

摘要

神经群体产生复杂的振荡模式,被认为是实现大脑功能的基础。健康成年人的大脑中占主导地位的节律是由 alpha 振荡形成的,其典型的功率峰值通常在 8 到 12Hz 之间。alpha 峰值频率被反复讨论为一种高度可遗传且稳定的神经生理“特征”标志物,反映了大脑的解剖学特性和个体的一般认知能力。然而,越来越多的证据表明,alpha 峰值频率在更短的时间尺度上是高度不稳定的,取决于个体的“状态”。基于最近众多研究的实验和理论结果的收敛,我们在这里提出,alpha 频率变异性构成了反映神经群体激活水平的自适应机制的基础,这具有重要的功能意义。我们在这里综合了实验和计算的观点,为 alpha 峰值频率的变化所起的潜在作用提供了新的视角,并讨论了由此产生的影响。我们进一步提出了一种潜在的机制,即在存在延迟反馈的情况下,通过尖峰神经元的噪声网络来调节 alpha 振荡。

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