首页> 外文期刊>Neural Systems and Rehabilitation Engineering, IEEE Transactions on >A Minimal Set of Electrodes for Motor Imagery BCI to Control an Assistive Device in Chronic Stroke Subjects: A Multi-Session Study
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A Minimal Set of Electrodes for Motor Imagery BCI to Control an Assistive Device in Chronic Stroke Subjects: A Multi-Session Study

机译:最少的一组用于运动图像BCI的电极,用于控制慢性中风患者的辅助设备:多节研究

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摘要

The brain–computer interface (BCI) system has been developed to assist people with motor disability. To make the system more user-friendly, it is a challenge to reduce the electrode preparation time and have a good reliability. This study aims to find a minimal set of electrodes for an individual stroke subject for motor imagery to control an assistive device using functional electrical stimulation for 20 sessions with accuracy higher than 90%. The characteristics of this minimal electrode set were evaluated with two popular algorithms: Fisher's criterion and support-vector machine recursive feature elimination (SVM-RFE). The number of calibration sessions for channel selection required for robust control of these 20 sessions was also investigated. Five chronic stroke patients were recruited for the study. Our results suggested that the number of calibration sessions for channel selection did not have a significant effect on the classification accuracy. A performance index devised in this study showed that one training day with 12 electrodes using the SVM-RFE method achieved the best balance between the number of electrodes and accuracy in the 20-session data. Generally, 8–36 channels were required to maintain accuracy higher than 90% in 20 BCI training sessions for chronic stroke patients.
机译:开发了脑机接口(BCI)系统来帮助行动不便的人。为了使系统更加人性化,减少电极准备时间并具有良好的可靠性是一个挑战。这项研究的目的是为运动图像的单个笔触对象找到最少的一组电极,以使用功能性电刺激进行20次疗程,以控制辅助设备,其准确性高于90%。用两种流行的算法评估了这种最小电极组的特性:Fisher准则和支持向量机递归特征消除(SVM-RFE)。还研究了对这20个会话进行鲁棒控制所需的频道选择校准会话的数量。该研究招募了五名慢性中风患者。我们的结果表明,用于通道选择的校准会话数对分类精度没有显着影响。在这项研究中设计的性能指标表明,使用SVM-RFE方法在12个电极上进行一个训练日,可以在20个疗程数据中在电极数量和准确性之间取得最佳平衡。通常,对于慢性卒中患者,在20次BCI训练中,需要8–36个通道来保持准确性高于90%。

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