| Literature DB >> 34096236 |
Weiqing Liu1, Lidong Xing1, Liuye Yao1, Zhihan Zou1, Yu Zhang1.
Abstract
In order to obtain comprehensive brain activity information conveniently in real time, this study designs a portable EEG and blood oxygen synchronous acquisition system for real-time monitoring of brain functional activities. The EEG electrodes filter and amplify the detected EEG signals, and send them to the microprocessor via Bluetooth to analyze the EEG data; the photoelectric probe converts the optical signals into electrical signals, which are amplified and separated, filtered, and AD converted, calculates the brain's oxygenation and blood-red protein (ΔHbO2) and blood-red protein (ΔHb) by amplification of Lambert-Beer law. Finally, experiments with commercial instruments NuAmps and Oximeter show that the system can calculate ΔHbO2 and ΔHb while collecting EEG signals.Entities:
Keywords: EEG; near-infrared spectroscopy; portable; synchronous acquisition
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Year: 2021 PMID: 34096236 DOI: 10.3969/j.issn.1671-7104.2021.03.010
Source DB: PubMed Journal: Zhongguo Yi Liao Qi Xie Za Zhi ISSN: 1671-7104