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Sound imagery contributes to foot Mi-based BCI even through it does not influence on the sensorimotor rhythms

机译:声像即使不影响感觉运动节律也有助于基于脚Mi的BCI

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Recently, brain-computer interfaces (BCIs) attract much attention as novel human interfaces such as exoskeleton, powered-wheelchair, and P300-based speller. One of the EEG feature called event-related (de)synchronization (ERD/S) is used for the BCI, because it can be caused by motor execution (ME), motor imagery (MI), or motor observation (MO). ERD is a relative power decrease during ME/MI/MO, whereas ERS is a relative power increase after the termination of ME/MI/MO. Thus, not only healthy but also paralyzed patients can use BCIs. It is expected to improve quality of life and to be a neurore-habilitation system for paralyzed. Previous studies indicate that visual and auditory feedback corresponding to MI provide better training effect than non-feedback. From these previous studies, we hypothesized that imagining movement and sound at the same time could enhance ERD/S. We investigated this hypothesis by conducting an experiment. Furthermore, we considered that just motor imagery and motor imagery with sound imagery could be classified by support vector machine (SVM). As a result, we found that there are no significant differences between ERD/S during just MI and during MI with sound imagery, however the classification accuracy between just MI and MI with sound imagery is comparable to the classification accuracy between rest and just MI.
机译:最近,脑机接口(BCI)作为新型人机界面(例如外骨骼,电动轮椅和基于P300的拼写器)引起了广泛关注。 BCI使用一种称为事件相关(去)同步(ERD / S)的EEG功能,因为它可能是由电机执行(ME),电机图像(MI)或电机观测(MO)引起的。 ERD是在ME / MI / MO期间的相对功率降低,而ERS是在ME / MI / MO终止后的相对功率升高。因此,不仅健康而且瘫痪的患者都可以使用BCI。有望改善生活质量,并成为瘫痪的神经康复系统。先前的研究表明,与MI相对应的视觉和听觉反馈比非反馈提供了更好的训练效果。从这些先前的研究中,我们假设同时想象运动和声音可以增强ERD / S。我们通过进行实验研究了这一假设。此外,我们认为支持向量机(SVM)可以仅对运动图像和带有声音图像的运动图像进行分类。结果,我们发现,仅在心梗期间和有声像的心梗期间,ERD / S之间没有显着差异,但是,仅心梗和有声像的心梗之间的分类准确性可与静止和仅心梗之间的分类准确性相媲美。

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