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Neural Correlates of Consciousness at Near-Electrocerebral Silence in an Asphyxial Cardiac Arrest Model

机译:窒息性心脏骤停模型中近脑沉默时的神经相关性

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摘要

Recent electrophysiological studies have suggested surges in electrical correlates of consciousness (i.e., elevated gamma power and connectivity) after cardiac arrest (CA). This study examines electrocorticogram (ECoG) activity and coherence of the dying brain during asphyxial CA. Male Wistar rats (n = 16) were induced with isoflurane anesthesia, which was washed out before asphyxial CA. Mean phase coherence and ECoG power were compared during different stages of the asphyxial period to assess potential neural correlates of consciousness. After asphyxia, the ECoG progressed through four distinct stages (asphyxial stages 1–4 [AS1-4]), including a transient period of near-electrocerebral silence lasting several seconds (AS3). Electrocerebral silence (AS4) occurred within 1 min of the start of asphyxia, and pulseless electrical activity followed the start of AS4 by 1–2 min. AS3 was linked to a significant increase in frontal coherence between the left and right motor cortices (p < 0.05), with no corresponding increase in ECoG power. AS3 was also associated with a significant posterior shift of ECoG power, favoring the visual cortices (p < 0.05). Although the ECoG during AS3 appears visually flat or silent when viewed with standard clinical settings, our study suggests that this period of transient near-electrocerebral silence contains distinctive neural activity. Specifically, the burst in frontal coherence and posterior shift of ECoG power that we find during this period immediately preceding CA may be a neural correlate of conscious processing.
机译:最近的电生理研究表明,心脏骤停(CA)后意识电相关性激增(即伽马功率和连通性升高)。这项研究检查了窒息性CA期间垂死大脑的脑电图(ECoG)活性和相干性。用异氟烷麻醉诱导雄性Wistar大鼠(n = 16),将其在窒息性CA之前洗净。在窒息期的不同阶段比较平均相干性和ECoG功率,以评估潜在的意识神经相关性。窒息后,ECoG经历了四个不同的阶段(窒息阶段1-4 [AS1-4]),包括一个持续几秒钟的近脑静默的过渡期(AS3)。脑窒息(AS4)在窒息开始后1分钟内发生,无脉冲电活动在AS4开始后1–2分钟开始。 AS3与左,右运动皮层之间的额叶相干性显着增加相关(p <0.05),而ECoG功率没有相应增加。 AS3还与ECoG功能的后移有关,有利于视觉皮层(p <0.05)。尽管在AS3期间使用标准临床设置观察时,ECoG在视觉上显得平淡无声,但我们的研究表明,这段短暂的近脑静默状态包含独特的神经活动。具体来说,我们在紧接CA之前的这段时间内发现的ECoG功率的前相干性和后移性爆发可能是意识处理的神经相关因素。

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