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[使用功能近红外光谱的神经反馈系统进行神经康复干预]

[Neurorehabilitative intervention with neurofeedback system using functional near-infrared spectroscopy].

作者信息

Mihara Masahito

机构信息

Neurorehabilitation Research Insitute, Morinomiya Hospital.

出版信息

Rinsho Shinkeigaku. 2011 Nov;51(11):924-6. doi: 10.5692/clinicalneurol.51.924.

Abstract

Recent advance in Brain-Machine interface (BMI) technology, including analysis of brain signal, enable a real-time interaction between patients and environment bypassing their damaged neuromuscular systems. Although most of researches have focused on substituting output function, it has been growing interest in applying this technology for restoring their brain. Several studies have proved that feedback of cortical activities (neurofeedback) enable regulating brain activation voluntarily. According to this notion, we have developed a real-time neurofeedback system mediated by near-infrared spectroscopy (NIRS) as a neurofeedback tool in neurorehabilitation. First, we have evaluated whether real-time cortical oxygenated hemoglobin (OxyHb) feedback signals correlated with reference OxyHb signals analyzed off-line during a motor execution task. Our results showed high correlation between results from two analyses. Second, we investigated whether the self-assessment scores for kinesthetic motor imagery and motor imagery related cortical activation was enhanced by neurofeedback. Our experiment with right handed healthy subjects revealed significant improvement of the imagery scale, and enhanced cortical activations including the contralateral premotor area. These results suggest that the neurofeedback technique may improve the efficacy of mental practice with motor imagery.

摘要

脑机接口(BMI)技术的最新进展,包括脑信号分析,能够使患者绕过受损的神经肌肉系统与环境进行实时交互。尽管大多数研究都集中在替代输出功能上,但将该技术应用于恢复大脑功能的兴趣也在不断增加。多项研究证明,皮层活动反馈(神经反馈)能够自主调节大脑激活。基于这一理念,我们开发了一种由近红外光谱(NIRS)介导的实时神经反馈系统,作为神经康复中的一种神经反馈工具。首先,我们评估了实时皮层氧合血红蛋白(OxyHb)反馈信号与运动执行任务期间离线分析的参考OxyHb信号是否相关。我们的结果显示两种分析结果之间具有高度相关性。其次,我们研究了神经反馈是否能提高运动觉运动想象和运动想象相关皮层激活的自我评估分数。我们对右利手健康受试者进行的实验显示,想象量表有显著改善,包括对侧运动前区在内的皮层激活增强。这些结果表明,神经反馈技术可能会提高运动想象心理训练的效果。

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