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An EEG (electroencephalogram) recording system with carbon wire electrodes for simultaneous EEG-fMRI (functional magnetic resonance imaging) recording

机译:具有碳丝电极的EEG(脑电图)记录系统用于同时进行EEG-fMRI(功能磁共振成像)记录

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摘要

Simultaneous EEG-fMRI (Electroencephalography-functional Magnetic Resonance Imaging) recording provides a means for acquiring high temporal resolution electrophysiological data and high spatial resolution metabolic data of the brain in the same experimental runs. Carbon wire electrodes (not metallic EEG electrodes with carbon wire leads) are suitable for simultaneous EEG-fMRI recording, because they cause less RF (radio-frequency) heating and susceptibility artifacts than metallic electrodes. These characteristics are especially desirable for recording the EEG in high field MRI scanners. Carbon wire electrodes are also comfortable to wear during long recording sessions. However, carbon electrodes have high electrode-electrolyte potentials compared to widely used Ag/AgCl (silver/silver-chloride) electrodes, which may cause slow voltage drifts. This paper introduces a prototype EEG recording system with carbon wire electrodes and a circuit that suppresses the slow voltage drift. The system was tested for the voltage drift, RF heating, susceptibility artifact, and impedance, and was also evaluated in a simultaneous ERP (event-related potential)-fMRI experiment.
机译:同时脑电图功能磁共振成像(脑电图功能磁共振成像)记录提供了一种方法,可以在同一实验运行中获取大脑的高时间分辨率电生理数据和高空间分辨率代谢数据。碳线电极(不是带有碳线引线的金属EEG电极)适合同时进行EEG-fMRI记录,因为与金属电极相比,它们引起的RF(射频)加热和磁化伪影更少。这些特征对于在高场MRI扫描仪中记录EEG尤其理想。碳丝电极在长时间录音期间也很舒适。但是,与广泛使用的Ag / AgCl(银/氯化银)电极相比,碳电极具有较高的电极电解质电势,这可能会导致电压漂移缓慢。本文介绍了带有碳丝电极和抑制缓慢电压漂移的电路的EEG记录系统原型。测试了该系统的电压漂移,RF加热,磁化伪影和阻抗,并在同时进行的ERP(事件相关电位)-fMRI实验中进行了评估。

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