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Large-scale signatures of unconsciousness are consistent with a departure from critical dynamics

机译:意识丧失的大规模特征与对关键动力的背离相一致

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摘要

Loss of cortical integration and changes in the dynamics of electrophysiological brain signals characterize the transition from wakefulness towards unconsciousness. In this study, we arrive at a basic model explaining these observations based on the theory of phase transitions in complex systems. We studied the link between spatial and temporal correlations of large-scale brain activity recorded with functional magnetic resonance imaging during wakefulness, propofol-induced sedation and loss of consciousness and during the subsequent recovery. We observed that during unconsciousness activity in frontothalamic regions exhibited a reduction of long-range temporal correlations and a departure of functional connectivity from anatomical constraints. A model of a system exhibiting a phase transition reproduced our findings, as well as the diminished sensitivity of the cortex to external perturbations during unconsciousness. This framework unifies different observations about brain activity during unconsciousness and predicts that the principles we identified are universal and independent from its causes.
机译:皮质整合的丧失和电生理脑信号的动态变化表征了从清醒到无意识的转变。在这项研究中,我们得出了一个基于复杂系统中相变理论的基本模型,解释了这些观察结果。我们研究了在清醒,丙泊酚引起的镇静和意识丧失以及随后的恢复过程中,功能磁共振成像记录的大规模脑活动的时空相关性之间的联系。我们观察到,在无意识活动期间,前丘脑区域表现出远距离时间相关性的降低,以及功能连接性从解剖学约束出发。表现出相变的系统模型再现了我们的发现,以及在意识丧失期间皮质对外部扰动的敏感性降低。该框架统一了关于意识丧失期间大脑活动的不同观察结果,并预测我们确定的原理是普遍的,并且不受其原因的影响。

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