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Multichannel wearable f NIRS‐EEG NIRS‐EEG system for long‐term clinical monitoring

机译:多通道穿戴F NIRS-EEG NIRS-EEG系统,用于长期临床监测

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摘要

Abstract Continuous brain imaging techniques can be beneficial for the monitoring of neurological pathologies (such as epilepsy or stroke) and neuroimaging protocols involving movement. Among existing ones, functional near‐infrared spectroscopy (fNIRS) and electroencephalography (EEG) have the advantage of being noninvasive, nonobstructive, inexpensive, yield portable solutions, and offer complementary monitoring of electrical and local hemodynamic activities. This article presents a novel system with 128 fNIRS channels and 32 EEG channels with the potential to cover a larger fraction of the adult superficial cortex than earlier works, is integrated with 32 EEG channels, is light and battery‐powered to improve portability, and can transmit data wirelessly to an interface for real‐time display of electrical and hemodynamic activities. A novel fNIRS‐EEG stretchable cap, two analog channels for auxiliary data (e.g., electrocardiogram), eight digital triggers for event‐related protocols and an internal accelerometer for movement artifacts removal contribute to improve data acquisition quality. The system can run continuously for 24?h. Following instrumentation validation and reliability on a solid phantom, performance was evaluated on (1) 12 healthy participants during either a visual (checkerboard) task at rest or while pedalling on a stationary bicycle or a cognitive (language) task and (2) 4 patients admitted either to the epilepsy ( n ?=?3) or stroke ( n ?=?1) units. Data analysis confirmed expected hemodynamic variations during validation recordings and useful clinical information during in‐hospital testing. To the best of our knowledge, this is the first demonstration of a wearable wireless multichannel fNIRS‐EEG monitoring system in patients with neurological conditions. Hum Brain Mapp 39:7–23, 2018 . ? 2017 Wiley Periodicals, Inc.
机译:摘要持续脑成像技术可能有利于监测神经病理病理(如癫痫或中风)和涉及运动的神经影像学方案。在现有的,功能近红外光谱(FNIR)和脑电图(EEG)具有非侵入性,非结构,廉价,产量便携式溶液的优点,并提供电气和局部血液动力学活动的互补监测。本文提出了一种新型系统,具有128个Fnirs通道和32个EEG通道,潜在的潜力覆盖大部分成人肤浅的成人的成人浅表,与前面的工作相结合,是32个EEG通道,是光线和电池供电的,可以提高可移植性,并可将数据无线传输到接口以实时显示电气和血液动力学活动。一种新型Fnirs-eeg可拉伸帽,用于辅助数据的两个模拟通道(例如,心电图),用于事件相关协议的八个数字触发器和用于移动伪影的内部加速度计可以去除有助于提高数据采集质量。系统可以连续运行24?h。在纯粹的幻影上的仪器验证和可靠性之后,在休息时的视觉(棋盘)任务或在固定自行车或认知(语言)任务和(2)4名患者的踩踏时,评估性能(1)12个健康参与者患有癫痫(n?= 3)或中风(n?=?1)单位。数据分析确认了在医院内测试期间验证记录和有用的临床信息期间的预期血液动力学变化。据我们所知,这是神经病症患者可穿戴无线多通道FNIRS-EEG监测系统的第一次演示。哼哼脑MAPP 39:7-23,2018。还2017年Wiley期刊,Inc。

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