首页> 外文期刊>IEEE transactions on neural systems and rehabilitation engineering >Performance Improvement of Near-Infrared Spectroscopy-Based Brain-Computer Interfaces Using Transcranial Near-Infrared Photobiomodulation With the Same Device
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Performance Improvement of Near-Infrared Spectroscopy-Based Brain-Computer Interfaces Using Transcranial Near-Infrared Photobiomodulation With the Same Device

机译:基于近红外光谱的脑电脑界面的性能改进使用具有相同装置的经颅近红外光生物调节

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Transcranial near-infrared photobiomodulation (tNIR-PBM) can modulate physiological characteristics of the human brain, such as the cerebral blood flow and oxidative metabolism. Here, we investigated whether the performance of near-infrared spectroscopy (NIRS)-based brain-computer interfaces (BCIs) can be improved by tNIR-PBM applied to the prefrontal cortex with the same NIRS device. A total of 14 healthy individuals participated in the NIRS-based BCI study where the aim was to distinguish the mental arithmetic task from the idle state (IS) task either after tNIR-PBM or after sham stimulation, with the two experiments being conducted at least two days apart. The tNIR-PBM was applied by simply turning on the NIRS recording equipment for 20 min. To evaluate the degree of performance improvement obtained after tNIR-PBM, the average BCI classification accuracy obtained under the tNIR-PBM condition was compared with that obtained under the sham stimulation condition. The classification accuracy of NIRS-based BCI was significantly improved upon conduction of tNIR-PBM (82.74%) as compared to that in the sham stimulation condition (76.07%, p < 0.005). Thus, our results suggest that simply turning on the NIRS recording equipment before the BCI experiment can improve the performance of the NIRS-based BCI system.
机译:经颅近红外光生物调节(TNIR-PBM)可以调节人脑的生理特性,例如脑血流和氧化代谢。在这里,我们研究了近红外光谱(NIRS)的脑电脑界面(BCIS)的性能是否可以通过施加到前额叶皮质与相同的NIR装置来改善。共有14个健康的个人参加了基于NIRS的BCI研究,目的是在TNIR-PBM或假刺激之后将心理算术任务与空闲状态或假刺激之后区分,这两个实验至少进行两天分开。通过简单地打开NIRS记录设备20分钟来应用TNIR-PBM。为了评估TNIR-PBM之后获得的性能改善程度,将在TNIR-PBM条件下获得的平均BCI分类精度与在假刺激条件下获得的平均BCI分类精度。与假刺激条件相比,在TNIR-PBM(82.74%)相比(76.07%,P <0.005)相比,基于NIRS的BCI的分类准确性显着提高。因此,我们的结果表明,在BCI实验可以提高基于NIRS的BCI系统的性能之前,简单地打开了NIRS记录设备。

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