首页> 外文会议>IEEE International Conference on Cognitive Infocommunications >Mu-beta rhythm ERD/ERS quantification for foot motor execution and imagery tasks in BCI applications
【24h】

Mu-beta rhythm ERD/ERS quantification for foot motor execution and imagery tasks in BCI applications

机译:Mu-β节律ERD / ERS定量,用于BCI应用中的足部运动执行和影像任务

获取原文

摘要

Viable usage of Brain-Computer Interface (BCI) in real-time applications significantly relies on the pre-processing techniques applied on the detected electroencephalography (EEG) signals. In EEG, sensorimotor (SMR)/oscillatory signals, such as mu and beta rhythm based BCIs, can be used to restore motor function by neuro-plasticity applied to re-establish normal brain function. This study is based on the evaluation of the foot motor execution (ME) and motor imagery (MI), in order to design a BCI neurorehabilitation system. Because foot ME and MI reflect the user's physical and imagination state of foot movement respectively, in order to be used as control signals, their appropriate translation is the basic challenge. This paper mainly focuses on the quantification and investigation of mu-beta event-related desynchronization (ERD) and event-related synchronization (ERS), for inter and intra-subject variability, making use of the available design tools in open-source platforms such as the OpenViBE software. Results show that the frequency of the most reactive components for mu was 8.8±0.5 Hz and 21.3±0.4 Hz for beta. Interestingly a contralateral dominance was visible at electrode position C3 during right foot ME/MI tasks. The results have enabled the implementation of a good platform for left-right foot ME/MI discrimination based BCI applications.
机译:在实时应用中可行地使用脑机接口(BCI)很大程度上取决于应用于检测到的脑电图(EEG)信号的预处理技术。在EEG中,感觉运动(SMR)/振荡信号,例如基于mu和beta节奏的BCI,可通过神经可塑性恢复正常的脑功能,从而恢复运动功能。这项研究基于对脚部运动执行(ME)和运动图像(MI)的评估,以设计BCI神经康复系统。因为脚ME和MI分别反映了用户的肢体运动的身体状态和想象状态,为了用作控制信号,它们的适当转换是基本挑战。本文主要针对mu-beta事件相关的失步(ERD)和事件相关的同步(ERS)进行量化和研究,以实现对象间和对象内的可变性,并利用开放源代码平台中可用的设计工具,例如作为OpenViBE软件。结果表明,mu的最高反应组分的频率为8.8±0.5 Hz,β的为21.3±0.4 Hz。有趣的是,在右脚ME / MI任务期间,在电极位置C3上可以看到对侧优势。结果为基于左右脚ME / MI歧视的BCI应用程序实现了一个良好的平台。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号