Cortical hemodynamics of electrographic status epilepticus in the critically ill.

IF 6.6 1区 医学 Q1 CLINICAL NEUROLOGY Epilepsia Pub Date : 2024-12-26 DOI:10.1111/epi.18224
Ali Kassab, Dènahin H Toffa, Manon Robert, Michaël Chassé, Frédéric Lesage, Ke Peng, Dang K Nguyen
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Abstract

Objectives: The pathophysiological mechanisms of status epilepticus (SE) underlying potential brain injury remain largely unclear. This study aims to employ functional near-infrared spectroscopy (fNIRS) combined with video-electroencephalography (vEEG) to monitor brain hemodynamics continuously and non-invasively in critically ill adult patients experiencing electrographic SE. Our primary focus is to investigate neurovascular coupling and cerebrovascular changes associated with seizures, particularly during recurring and/or prolonged episodes.

Methods: Eleven critically ill adult patients underwent simultaneous vEEG-fNIRS with large cortical coverage. Data from seven patients with identified electrographic SE were analyzed. The timing of recorded seizures was marked using standardized critical care EEG terminology. A general linear model was employed to extract the hemodynamic response to seizures from the fNIRS recordings. Linear mixed-effects models were utilized to correlate hemodynamic responses with seizure characteristics.

Results: A total of >200 h of monitoring and >1000 seizures were recorded. In most patients, an increase in oxyhemoglobin (HbO) and a decrease in deoxyhemoglobin (HbR) were observed during shorter-duration seizures. Although a similar response could also be seen initially for longer-duration seizures, this hemodynamic change was often followed by a progressive decline in HbO concentration and an increase in HbR. At the systemic level, no significant difference in peripheral oxygenation occurred during seizures, and only small changes in mean arterial blood pressure and heart rate occurred in four and two patients, respectively.

Significance: We demonstrate the feasibility of using multichannel vEEG-fNIRS to measure the hemodynamic changes associated with electrographic seizures in critically ill adult patients. Our findings suggest that disrupted neurovascular coupling is more prevalent during prolonged seizures compared to recurrent short-duration seizures. This research provides valuable insights into the dynamic interplay between neuronal activity and hemodynamics during critical care seizures.

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危重病人癫痫持续状态的脑皮层血流动力学。
目的:癫痫持续状态(SE)潜在脑损伤的病理生理机制仍不清楚。本研究旨在应用功能近红外光谱(fNIRS)结合视频脑电图(vEEG)技术,对经历电图SE的危重成人患者进行连续、无创的脑血流动力学监测。我们的主要重点是研究与癫痫发作相关的神经血管耦合和脑血管变化,特别是在反复发作和/或长时间发作期间。方法:11例危重成人患者同时行脑皮层大覆盖的vEEG-fNIRS。分析了7例经电图鉴定的SE患者的数据。记录癫痫发作的时间使用标准化的重症监护EEG术语进行标记。采用一般线性模型从近红外光谱记录中提取癫痫发作时的血流动力学响应。线性混合效应模型用于将血流动力学反应与癫痫发作特征相关联。结果:共记录监测bb10200 h,癫痫发作bb101000次。在大多数患者中,在短时间癫痫发作期间观察到氧合血红蛋白(HbO)升高和脱氧血红蛋白(HbR)降低。虽然类似的反应最初也可以在较长时间的癫痫发作中看到,但这种血流动力学变化通常伴随着HbO浓度的逐渐下降和HbR的增加。在全身水平上,癫痫发作期间外周氧合无显著差异,平均动脉血压和心率分别只有4例和2例患者发生微小变化。意义:我们证明了使用多通道vEEG-fNIRS来测量危重成人患者与电痉挛相关的血流动力学变化的可行性。我们的研究结果表明,与复发性短时间癫痫发作相比,神经血管耦合中断在长时间癫痫发作中更为普遍。这项研究提供了宝贵的见解,神经元活动和血流动力学之间的动态相互作用,在重症监护癫痫发作。
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来源期刊
Epilepsia
Epilepsia 医学-临床神经学
CiteScore
10.90
自引率
10.70%
发文量
319
审稿时长
2-4 weeks
期刊介绍: Epilepsia is the leading, authoritative source for innovative clinical and basic science research for all aspects of epilepsy and seizures. In addition, Epilepsia publishes critical reviews, opinion pieces, and guidelines that foster understanding and aim to improve the diagnosis and treatment of people with seizures and epilepsy.
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