基于脑机接口的情绪控制系统的可行性研究

M. Uma, S. Sridhar
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引用次数: 10

摘要

脑机接口(BCI)是人脑与外界环境之间的直接通信通道。通过这个界面,用户可以不需要任何肌肉运动,而是通过思维过程来发送信息或命令。脑电图(EEG)被用来测量由数十亿个被称为神经元的神经细胞产生的大脑反应。脑电图活动是通过放置在头皮上的电极记录下来的。脑电图信号通常根据其频率从低于0.5 Hz到高于30 Hz的频率分为不同的节奏,分为Delta, Theta, Alpha, Beta和Gamma波。脑机接口系统的主要目标是将大脑信号转化为控制信号,并利用它们来控制特定应用领域的活动。本文的目的是研究开发脑机接口系统识别和控制人的压力水平的可行性。被试的情绪水平将根据捕捉到的脑电图信号进行识别,并通过Valence-Arousal模型进行分析。进一步,根据人的情绪状态,播放相应的音乐,降低人的压力水平,从而控制主体的情绪水平。在脑机接口研究实验室进行了实验,结果表明开发情绪控制系统具有重要的可行性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A feasibility study for developing an emotional control system through brain computer interface
A Brain Computer Interface (BCI) is a direct communication channel between a human brain and an outside environment. Through this interface, users' can send their messages or commands without any muscle movement, but through the thought process. Electroencephalogram (EEG) is used to measure the brain response which is generated by billions of nerve cells called neurons. This EEG activity is recorded through electrodes placed on the scalp. EEG signals are conventionally categorized into different rhythms based on their frequencies ranging from less than 0.5 Hz to above 30 Hz categorized as Delta, Theta, Alpha, Beta and Gamma waves. The main objectives of BCI systems are to translate the brain signals into control signals and use them to control activities on particular application domain. The objective of this paper is to study the feasibility of developing a BCI system for recognizing and controlling the stress level of a person. The emotional level of the subject will be recognized based on the brain EEG signals captured and analyzed through the Valence-Arousal model. Further, based on the emotional status of the person, corresponding music shall be played to reduce the stress level of a person, thereby controlling the emotional level of the subject. Experiments have been carried out in the Brain Computer Interface Research Lab and the results show a significant feasibility in developing an emotional control system.
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