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METHOD FOR INCREASING THE ACTIVITY EEG θ-, α-RHYTHMS OF THE BRAIN

机译:增加大脑活动性脑电图θ-,α-节律的方法

摘要

A method for increasing the EEG activity θ-, brain α-registration of EEG rhythms comprising at planar images and three-dimensional perception, characterized in that the visual system, which takes images from planar depth effects and volume EEG activity recorded in the images I1, I2, I3 , I4 used during training, in which the ability to develop a three-dimensional perception of planar images, for which, initially, is used stereogrammyI1, I3, which consist of high frequency and low frequency components, obtained EEG activity in their planar and three-dimensional perception of all elements of the stereoscopic depth further recorded EEG activity by observing the first 3D-raster izobrazheniyaI2 with dynamically varying depth perception and a second 3D-raster izobrazheniyaI3, compared EEG activity, its depth perception with stereogrammyI3 planar perception, then use two planar images I2 and I4 previously proven three-dimensional perception of images, performed their flat condition stnogo and three-dimensional perception is obtained and characteristic EEG activity, and finally, find increasing θ-, α-activity in a three-dimensional perception stereogrammyI1 compared with its planar perception, power variation of EEG rhythms during dynamically changing perception of depth of the first raster izobrazheniyaI2 increase θ -, α-rhythms in the perception of the second raster izobrazheniyaI3 compared to planar stereogrammyI3 perception, increasing θ-, α-activity in three-dimensional perception of images I2 and I4 on Wed.
机译:一种在平面图像和三维感知中增加脑电活动的脑电活动θ-,脑α-配准的方法,其特征在于,视觉系统从平面深度效应和图像中记录的脑电活动量中采集图像,I2,I3,I4用于训练,其中能够发展平面图像的三维感知能力,为此最初使用的是由高频和低频成分组成的stereogrammyI1,I3,从而获得了脑电活动他们通过观察具有动态变化深度感知的第一个3D栅格izobrazheniyaI2和第二个3D栅格izobrazheniyaI3进一步观察了脑立体活动的平面和三维感知,并将脑电图活动,其深度感知与stereogrammyI3平面感知相比较,然后使用两个平面图像I2和I4先前证明的图像的三维感知,执行它们的平坦条件stnogo和获得三维感知并具有特征性的脑电活动,最后,在三维感知立体图I1中,与平面感知相比,发现其θ-,α活性增加,动态改变第一栅格深度感知时脑电节律的幂变化与平面立体图I3感知相比,izobrazheniyaI2在第二个栅格izobrazheniyaI3感知中增加了θ-,α节奏,在周三对图像I2和I4的三维感知中增加了θ-,α活性。

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