逆视觉适应过程中的脑电图测量

T. Onomoto, Y. Yoshida, N. Miki
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引用次数: 1

摘要

本文利用脑电图(EEG)研究了视觉倒转适应过程中的脑活动。特别地,我们使用了像蜡烛一样的微针电极,不需要任何准备就可以测量高质量的EEG。需要注意的是,传统的湿电极需要磨损角质层和应用电解质浆料作为EEG测量的准备,并且会给受试者带来不适,并且需要实验者花费时间。在我们之前的研究中,我们测量了适应过程中的眼球运动,并成功地捕捉了适应过程的进展。在这项研究中,我们测量了在反向视觉状态下的指向任务中的脑电,将感知学习与脑电联系起来。我们发现高β波、低γ波和中γ波与视觉适应过程有很强的相关性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Electroencephalogram Measurement in Adapting Process to Inverse Vision
This paper describes investigation of the brain activity in an adapting process to inversion vision through electroencephalogram (EEG). In particular, we used Candle-like microneedle electrodes, which does not require any preparation for measuring high-quality EEG. Note that conventional wet electrodes require abrasion of stratum corneum and application of electrolyte paste as preparation for measurement of EEG and they give discomfort to subjects and take time for experimenters. In our previous study, the eye movement during the adapting process was measured and the progress of the process was successfully captured. In this study, we measured EEG during the pointing task under an inverse vision state to correlate the perceptual learning with EEG. We discovered that High β wave, Low γ wave and Mid γ wave had strong correlation with the process of adapting to inversed vision.
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