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大规模脑活动的动态模型。

Dynamic models of large-scale brain activity.

机构信息

QIMR Berghofer Medical Research Institute, Herston, Queensland, Australia.

Metro North Mental Health Service, Herston, Queensland, Australia.

出版信息

Nat Neurosci. 2017 Feb 23;20(3):340-352. doi: 10.1038/nn.4497.

Abstract

Movement, cognition and perception arise from the collective activity of neurons within cortical circuits and across large-scale systems of the brain. While the causes of single neuron spikes have been understood for decades, the processes that support collective neural behavior in large-scale cortical systems are less clear and have been at times the subject of contention. Modeling large-scale brain activity with nonlinear dynamical systems theory allows the integration of experimental data from multiple modalities into a common framework that facilitates prediction, testing and possible refutation. This work reviews the core assumptions that underlie this computational approach, the methodological framework that fosters the translation of theory into the laboratory, and the emerging body of supporting evidence. While substantial challenges remain, evidence supports the view that collective, nonlinear dynamics are central to adaptive cortical activity. Likewise, aberrant dynamic processes appear to underlie a number of brain disorders.

摘要

运动、认知和感知源于皮质回路和大脑大规模系统中神经元的集体活动。虽然单个神经元尖峰的原因已经被理解了几十年,但支持大规模皮质系统中集体神经行为的过程还不太清楚,有时甚至存在争议。使用非线性动力系统理论对大规模脑活动进行建模,可以将来自多种模态的实验数据整合到一个共同的框架中,从而促进预测、测试和可能的反驳。这项工作回顾了该计算方法的核心假设、促进理论转化为实验室的方法框架,以及支持该方法的新兴证据。虽然仍然存在重大挑战,但有证据支持这样一种观点,即集体的非线性动力学是皮质适应性活动的核心。同样,异常的动态过程似乎是许多大脑疾病的基础。

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