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脑血管调节的多模态神经影像学研究:脑电图、功能近红外光谱、经颅多普勒超声及生理参数联合应用的方案与见解

A multimodal neuroimaging study of cerebrovascular regulation: protocols and insights of combining electroencephalography, functional near-infrared spectroscopy, transcranial Doppler ultrasound, and physiological parameters.

作者信息

Burma Joel S, Johnson Nathan E, Oni Ibukunoluwa K, Lapointe Andrew P, Debert Chantel T, Schneider Kathryn J, Dunn Jeff F, Smirl Jonathan D

机构信息

Cerebrovascular Concussion Lab, Faculty of Kinesiology, University of Calgary, Calgary, Alberta, Canada.

Libin Cardiovascular Institute of Alberta, University of Calgary, Calgary, Alberta, Canada.

出版信息

J Neural Eng. 2025 Jan 9;22(1). doi: 10.1088/1741-2552/ada4de.

Abstract

. The current paper describes the creation of a simultaneous trimodal neuroimaging protocol. The authors detail their methodological design for a subsequent large-scale study, demonstrate the ability to obtain the expected physiologically induced responses across cerebrovascular domains, and describe the pitfalls experienced when developing this approach.. Electroencephalography (EEG), functional near-infrared spectroscopy (fNIRS), and transcranial Doppler ultrasound (TCD) were combined to provide an assessment of neuronal activity, microvascular oxygenation, and upstream artery velocity, respectively. Real-time blood pressure, capnography, and heart rate were quantified to control for the known confounding influence of cardiorespiratory variables. The EEG-fNIRS-TCD protocol was attached to a 21 year-old male who completed neurovascular coupling/functional hyperemia (finger tapping and ''), dynamic cerebral autoregulation (squat-stand maneuvers), and cerebrovascular reactivity tasks (end-tidal clamping during hypocapnia/hypercapnia).. In a pilot participant, the Waldo task produced robust hemodynamic responses within the occipital microvasculature and the posterior cerebral artery. A ∼90% decrease in alpha band power was seen in the occipital cortical region compared between the eyes closed and eyes opened protocol, compared to the frontal, central, and parietal regions (∼80% reduction). A modest increase in motor oxygenated hemoglobin was seen during the finger tapping task, with a harmonious alpha decrease of ∼15% across all cortical regions. No change in the middle or posterior cerebral arteries were noted during finger tapping. During cerebral autoregulatory challenges, sinusoidal oscillations were produced in hemodynamics at 0.05 and 0.10 Hz, while a decrease and increase in TCD and fNIRS metrics were elicited during hypocapnia and hypercapnia protocols, respectively.. All neuroimaging modalities have their inherent limitations; however, these can be minimized by employing multimodal neuroimaging approaches. This EEG-fNIRS-TCD protocol enables a comprehensive assessment of cerebrovascular regulation across the association between electrical activity and cerebral hemodynamics during tasks with a mild degree of body and/or head movement.

摘要

本文描述了一种同步三模态神经成像方案的创建。作者详细介绍了后续大规模研究的方法设计,展示了在脑血管领域获得预期生理诱导反应的能力,并描述了开发该方法时遇到的问题。脑电图(EEG)、功能近红外光谱(fNIRS)和经颅多普勒超声(TCD)相结合,分别用于评估神经元活动、微血管氧合和上游动脉速度。对实时血压、二氧化碳图和心率进行量化,以控制心肺变量已知的混杂影响。EEG-fNIRS-TCD方案应用于一名21岁男性,该男性完成了神经血管耦合/功能性充血(手指敲击和“ ”)、动态脑自动调节(深蹲-站立动作)和脑血管反应性任务(低碳酸血症/高碳酸血症期间的呼气末钳夹)。在一名试点参与者中,沃尔多任务在枕部微血管和大脑后动脉内产生了强烈的血流动力学反应。与闭眼和睁眼方案相比,枕叶皮质区域的α波段功率下降了约90%,而额叶、中央和顶叶区域下降了约80%。在手指敲击任务期间,运动性氧合血红蛋白略有增加,所有皮质区域的α波和谐下降约15%。手指敲击期间,大脑中动脉和大脑后动脉未见变化。在脑自动调节挑战期间,血流动力学在0.05和0.10Hz产生正弦振荡,而在低碳酸血症和高碳酸血症方案期间,TCD和fNIRS指标分别出现下降和上升。所有神经成像方式都有其固有的局限性;然而,通过采用多模态神经成像方法可以将这些局限性降至最低。这种EEG-fNIRS-TCD方案能够在身体和/或头部有轻度运动的任务期间,全面评估电活动与脑血流动力学之间关联的脑血管调节情况。

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