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迈向基于稳态视觉诱发电位脑机接口和被动脑机接口的混合脑机接口架构。

Towards an architecture of a hybrid BCI based on SSVEP-BCI and passive-BCI.

作者信息

Cotrina Anibal, Benevides Alessandro, Ferreira Andre, Bastos Teodiano, Castillo Javier, Menezes Maria Luiza, Pereira Carlos

出版信息

Annu Int Conf IEEE Eng Med Biol Soc. 2014;2014:1342-5. doi: 10.1109/EMBC.2014.6943847.

Abstract

Recent decades have seen BCI applications as a novel and promising new channel of communication, control and entertainment for disabled and healthy people. However, BCI technology can be prone to errors due to the basic emotional state of the user: the performance of reactive and active BCIs decrease when user becomes stressed or bored, for example. Passive-BCI is a recent approach that fuses BCI technology with cognitive monitoring, providing valuable information about the user's intentions, the situational interpretations and mainly the emotional state. In this work, an architecture composed by passive-BCI co-working with SSVEP-BCI is proposed, with the aim of improving the performance of the reactive-BCI. The possibility of adjusting recognition characteristics of SSVEP-BCIs using a passive-BCI output is evaluated. In this sense, two ways to recover the accuracy of SSVEP are presented in this paper: 1) Adjusting of Amplitude of the SSVEP and 2) Adjusting of Frequency of the SSVEP response. The results are promising, because accuracy of SSVEP-BCI can be recovered in the case that it was reduced by the BCI user's emotional state.

摘要

近几十年来,脑机接口(BCI)应用已成为一种面向残疾人和健康人的新颖且有前景的通信、控制及娱乐新途径。然而,由于用户的基本情绪状态,BCI技术可能容易出错:例如,当用户感到压力或无聊时,反应式和主动式BCI的性能会下降。被动式BCI是一种将BCI技术与认知监测相结合的最新方法,可提供有关用户意图、情境解读以及主要是情绪状态的有价值信息。在这项工作中,提出了一种由被动式BCI与稳态视觉诱发电位(SSVEP)-BCI协同工作组成的架构,旨在提高反应式BCI的性能。评估了使用被动式BCI输出调整SSVEP-BCIs识别特征的可能性。从这个意义上讲,本文提出了两种恢复SSVEP准确性的方法:1)调整SSVEP的幅度;2)调整SSVEP响应的频率。结果很有前景,因为在SSVEP-BCI的准确性因BCI用户的情绪状态而降低的情况下,可以恢复其准确性。

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