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Cortical activation investigation by optical flow and wavelet analysis using near-infrared spectroscopy

机译:通过光流和小波分析使用近红外光谱研究皮质激活

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In this paper, investigations of brain activity response from experimental works, based on optic flow and wavelet using near infrared spectroscopy are presented. The outcomes of our research project showed that optical flow is a proper technology for the investigation of brain activity based on near-infrared spectroscopy (NIRS). Our research also showed that the results in the temporal domain, spatial domain, and wavelet domain are coherently supporting the analyses of our experimental results. Our wavelet analysis can obtain the majority of the brain activity for the spatiotemporal distribution. Based on the spatiotemporal analysis, we can clearly observe the existence of the dominant channel (DC), which plays a critical role in the brain activity. The spatial distribution of the cortical activity origin can be described by the hemodynamic response in the cerebral cortex after evoked stimulation using near infrared spectroscopy. Further application is expected in the next research outcomes.
机译:在本文中,基于近红外光谱的光流和小波,研究了来自实验作品的大脑活动反应。我们研究项目的结果表明,光流是一种基于近红外光谱(NIRS)研究大脑活动的合适技术。我们的研究还表明,时域,空间域和小波域的结果一致地支持了我们的实验结果分析。我们的小波分析可以获得时空分布的大部分大脑活动。基于时空分析,我们可以清楚地观察到显性通道(DC)的存在,该通道在大脑活动中起关键作用。皮质活动起源的空间分布可以通过使用近红外光谱诱发的刺激后大脑皮质中的血流动力学反应来描述。有望在下一个研究成果中进一步应用。

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