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意识障碍与正常状态下的脑电代谢耦联。

Cerebral electrometabolic coupling in disordered and normal states of consciousness.

机构信息

Coma Science Group, GIGA-Consciousness, University of Liège, Liège, Belgium; Centre du Cerveau(2), University Hospital of Liège, Liège, Belgium.

Energy Efficiency, Samotics Bv, Leiden, the Netherlands.

出版信息

Cell Rep. 2023 Aug 29;42(8):112854. doi: 10.1016/j.celrep.2023.112854. Epub 2023 Jul 26.

Abstract

We assess cerebral integrity with cortical and subcortical FDG-PET and cortical electroencephalography (EEG) within the mesocircuit model framework in patients with disorders of consciousness (DoCs). The mesocircuit hypothesis proposes that subcortical activation facilitates cortical function. We find that the metabolic balance of subcortical mesocircuit areas is informative for diagnosis and is associated with four EEG-based power spectral density patterns, cortical metabolism, and α power in healthy controls and patients with a DoC. Last, regional electrometabolic coupling at the cortical level can be identified in the θ and α ranges, showing positive and negative relations with glucose uptake, respectively. This relation is inverted in patients with a DoC, potentially related to altered orchestration of neural activity, and may underlie suboptimal excitability states in patients with a DoC. By understanding the neurobiological basis of the pathophysiology underlying DoCs, we foresee translational value for diagnosis and treatment of patients with a DoC.

摘要

我们通过皮层和皮层下 FDG-PET 以及皮质脑电图 (EEG) 在意识障碍 (DOC) 患者的中脑回路模型框架内评估大脑完整性。中脑回路假说提出,皮质下激活有助于皮质功能。我们发现,皮质下中脑回路区域的代谢平衡对诊断具有信息性,并与健康对照组和意识障碍患者的四个基于 EEG 的功率谱密度模式、皮质代谢和α功率相关。最后,在 θ 和 α 范围内可以在皮质水平上识别局部电代谢偶联,分别与葡萄糖摄取呈正相关和负相关。在意识障碍患者中,这种关系发生了反转,可能与神经活动的改变协调有关,并且可能是意识障碍患者兴奋性状态不佳的基础。通过了解意识障碍患者病理生理学的神经生物学基础,我们预见了对意识障碍患者的诊断和治疗的转化价值。

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