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脑-机接口控制车辆中实际实用的脑电图伪迹处理。

EEG Artifacts Handling in a Real Practical Brain-Computer Interface Controlled Vehicle.

出版信息

IEEE Trans Neural Syst Rehabil Eng. 2019 Jun;27(6):1200-1208. doi: 10.1109/TNSRE.2019.2915801. Epub 2019 May 15.

Abstract

One of the main issues restricting the practical efficiency of brain-computer interface (BCI) systems is the inevitable occurrence of physiological artifacts during electroencephalography (EEG) recordings. The effects of the artifacts are, however, mostly discarded in practical BCI systems, due to the time-consuming and complicated computational processes. This paper presents the influences of the artifacts and the efficiency of reducing these influences in a practical BCI. Ocular and muscular artifacts are considered due to the high-amplitude and frequent presence. The paradigm is designed based on the mental controlling of a radio-control (RC) car. Two motor imagery commands, containing the imagination of movement of left/right hand, are used to navigate the BCI-based RC car to turn left/right. The results indicate that the artifacts can highly affect the system performance; reducing their influence significantly improves the efficiency.

摘要

影响脑-机接口(BCI)系统实际效率的一个主要问题是脑电图(EEG)记录中不可避免地会出现生理伪迹。然而,由于计算过程繁琐耗时,这些伪迹的影响在实际的 BCI 系统中大多被丢弃。本文介绍了在实际 BCI 中伪迹的影响及其降低这些影响的效率。由于振幅高且频繁出现,因此考虑了眼动和肌肉伪迹。该范式是基于对无线电控制(RC)车的心理控制而设计的。使用两个运动想象命令,包含想象左手/右手的运动,来控制基于 BCI 的 RC 车向左/右转。结果表明,伪迹会极大地影响系统性能;降低其影响可以显著提高效率。

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