经颅直流电刺激
脑电图
交叉研究
阿尔法(金融)
感觉运动节律
刺激
心理学
闭环
计算机科学
听力学
医学
神经反射
神经科学
发展心理学
病理
心理测量学
替代医学
控制工程
工程类
结构效度
安慰剂
作者
Jorge Leite,León Morales-Quezada,Sandra Carvalho,Aurore Thibaut,Deniz Doruk,Chiun-Fan Chen,Steven C. Schachter,Alexander Rotenberg,Felipe Fregni
标识
DOI:10.1142/s0129065717500265
摘要
Conventional transcranial direct current stimulation (tDCS) protocols rely on applying electrical current at a fixed intensity and duration without using surrogate markers to direct the interventions. This has led to some mixed results; especially because tDCS induced effects may vary depending on the ongoing level of brain activity. Therefore, the objective of this preliminary study was to assess the feasibility of an EEG-triggered tDCS system based on EEG online analysis of its frequency bands. Six healthy volunteers were randomized to participate in a double-blind sham-controlled crossover design to receive a single session of 10[Formula: see text]min 2[Formula: see text]mA cathodal and sham tDCS. tDCS trigger controller was based upon an algorithm designed to detect an increase in the relative beta power of more than 200%, accompanied by a decrease of 50% or more in the relative alpha power, based on baseline EEG recordings. EEG-tDCS closed-loop-system was able to detect the predefined EEG magnitude deviation and successfully triggered the stimulation in all participants. This preliminary study represents a proof-of-concept for the development of an EEG-tDCS closed-loop system in humans. We discuss and review here different methods of closed loop system that can be considered and potential clinical applications of such system.
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