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基于黎曼几何的错误相关电位分类。

Towards the Classification of Error-Related Potentials using Riemannian Geometry.

出版信息

Annu Int Conf IEEE Eng Med Biol Soc. 2021 Nov;2021:5905-5908. doi: 10.1109/EMBC46164.2021.9629583.

Abstract

The error-related potential (ErrP) is an event-related potential (ERP) evoked by an experimental participant's recognition of an error during task performance. ErrPs, originally described by cognitive psychologists, have been adopted for use in brain-computer interfaces (BCIs) for the detection and correction of errors, and the online refinement of decoding algorithms. Riemannian geometry-based feature extraction and classification is a new approach to BCI which shows good performance in a range of experimental paradigms, but has yet to be applied to the classification of ErrPs. Here, we describe an experiment that elicited ErrPs in seven normal participants performing a visual discrimination task. Audio feedback was provided on each trial. We used multi-channel electroencephalogram (EEG) recordings to classify ErrPs (success/failure), comparing a Riemannian geometry-based method to a traditional approach that computes time-point features. Overall, the Riemannian approach outperformed the traditional approach (78.2% versus 75.9% accuracy, p <0.05); this difference was statistically significant (p <0.05) in three of seven participants. These results indicate that the Riemannian approach better captured the features from feedback-elicited ErrPs, and may have application in BCI for error detection and correction.

摘要

错误相关电位(ErrP)是一种事件相关电位(ERP),由实验参与者在任务执行过程中识别错误而引起。ErrP 最初由认知心理学家描述,现已被用于脑机接口(BCI)中,用于检测和纠正错误,并在线优化解码算法。基于黎曼几何的特征提取和分类是一种新的 BCI 方法,在一系列实验范式中表现出良好的性能,但尚未应用于 ErrP 的分类。在这里,我们描述了一项实验,该实验在七名正常参与者执行视觉辨别任务时诱发了 ErrP。每个试验都提供音频反馈。我们使用多通道脑电图(EEG)记录来对 ErrP(成功/失败)进行分类,将基于黎曼几何的方法与计算时间点特征的传统方法进行比较。总体而言,基于黎曼几何的方法优于传统方法(准确率分别为 78.2%和 75.9%,p<0.05);在七名参与者中的三名中,这种差异具有统计学意义(p<0.05)。这些结果表明,基于黎曼几何的方法更好地捕捉了反馈诱发的 ErrP 的特征,可能在用于错误检测和纠正的 BCI 中有应用。

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