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通过完全可穿戴式脑机接口系统为基于运动想象的远程康复铺平道路。

Paving the Way for Motor Imagery-Based Tele-Rehabilitation through a Fully Wearable BCI System.

机构信息

Department of Electrical Engineering and Information Technology (DIETI), Università Degli Studi di Napoli Federico II, 80125 Naples, Italy.

Augmented Reality for Health Monitoring Laboratory (ARHeMLab), Università Degli Studi di Napoli Federico II, 80125 Naples, Italy.

出版信息

Sensors (Basel). 2023 Jun 23;23(13):5836. doi: 10.3390/s23135836.

Abstract

The present study introduces a brain-computer interface designed and prototyped to be wearable and usable in daily life. Eight dry electroencephalographic sensors were adopted to acquire the brain activity associated with motor imagery. Multimodal feedback in extended reality was exploited to improve the online detection of neurological phenomena. Twenty-seven healthy subjects used the proposed system in five sessions to investigate the effects of feedback on motor imagery. The sample was divided into two equal-sized groups: a "neurofeedback" group, which performed motor imagery while receiving feedback, and a "control" group, which performed motor imagery with no feedback. Questionnaires were administered to participants aiming to investigate the usability of the proposed system and an individual's ability to imagine movements. The highest mean classification accuracy across the subjects of the control group was about 62% with 3% associated type A uncertainty, and it was 69% with 3% uncertainty for the neurofeedback group. Moreover, the results in some cases were significantly higher for the neurofeedback group. The perceived usability by all participants was high. Overall, the study aimed at highlighting the advantages and the pitfalls of using a wearable brain-computer interface with dry sensors. Notably, this technology can be adopted for safe and economically viable tele-rehabilitation.

摘要

本研究介绍了一种可穿戴、可在日常生活中使用的脑机接口,它由八个干电极传感器组成,用于获取与运动想象相关的脑活动。扩展现实中的多模态反馈被用来提高神经现象的在线检测。27 名健康受试者在五个会话中使用了所提出的系统,以研究反馈对运动想象的影响。该样本被分为两个相等大小的组:一组是“神经反馈”组,他们在接收反馈的同时进行运动想象,另一组是“对照组”,他们在没有反馈的情况下进行运动想象。向参与者发放了问卷,旨在调查所提出系统的可用性以及个人进行运动想象的能力。对照组的受试者的最高平均分类准确率约为 62%,A 型不确定性为 3%,神经反馈组的准确率为 69%,不确定性为 3%。此外,在某些情况下,神经反馈组的结果明显更高。所有参与者的感知可用性都很高。总的来说,这项研究旨在强调使用带有干电极传感器的可穿戴脑机接口的优点和缺点。值得注意的是,这项技术可以用于安全且经济可行的远程康复。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f024/10346666/149a8b592ba3/sensors-23-05836-g001.jpg

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