Brain computer interface: A review

Parmar Prashant, A. Joshi, Vaibhav Gandhi
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引用次数: 9

Abstract

A brain-computer interface (BCI), also referred to as a mind-machine interface (MMI) or a brain-machine interface (BMI), provides a non-muscular channel of communication between the human brain and a computer system. With the advancements in low-cost electronics and computer interface equipment, as well as the need to serve people suffering from disabilities of neuromuscular disorders, a new field of research has emerged by understanding different functions of the brain. The electroencephalogram (EEG) is an electrical activity generated by brain structures and recorded from the scalp surface through electrodes. Researchers primarily rely on EEG to characterise the brain activity, because it can be recorded non-invasively by using portable equipment. The EEG or the brain activity can be used in real time to control external devices via a complete BCI system. A typical BCI scheme generally consists of a data acquisition system, pre-processing of the acquired signals, feature extraction process, classification of the features, post-processing of the classifier output, and finally the control interface and device controller. The post-processed output signals are translated into appropriate commands so as to control output devices, with several applications such as robotic arms, video games, wheelchair etc.
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脑机接口:综述
脑机接口(BCI),也被称为脑机接口(MMI)或脑机接口(BMI),提供了人类大脑和计算机系统之间的非肌肉通信通道。随着低成本电子设备和计算机接口设备的进步,以及为患有神经肌肉疾病的残疾人提供服务的需要,通过了解大脑的不同功能,出现了一个新的研究领域。脑电图(EEG)是由大脑结构产生的电活动,通过电极从头皮表面记录下来。研究人员主要依靠脑电图来描述大脑活动,因为它可以通过使用便携式设备进行无创记录。脑电图或大脑活动可以通过一个完整的脑机接口系统实时控制外部设备。典型的BCI方案一般包括数据采集系统、采集信号的预处理、特征提取过程、特征分类、分类器输出的后处理,最后是控制接口和设备控制器。将后处理后的输出信号转换成相应的命令,从而控制输出设备,应用于机械臂、电子游戏、轮椅等。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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