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Development of a computerized EEG imaging system with a personal computer

机译:用个人计算机开发计算机化的脑电图成像系统

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The authors developed a computerized electroencephalography imaging system with an IBM PC AT. The EEG signals amplified with a 16 channel EEG machine were digitized at 51.2 Hz (512 samples per epoch). The shifted DC potential and 60Hz artificats were removed by a high pass filter and 60Hz notch filter. A window function consisting of a 10% cosine taper was obtained by weighting the points at either end of the epoch by a cosine bell. A fast Fourier transform was applied to every epoch and the power spectrum estimates were computed in 0.39 Hz steps. The activity estimates for the delta, theta, alpha and beta bands were computed by summimg adjacent values. The outline of the top-down maps was formed from a series of sagittal cuts, then 32 electrodes were placed on the map. A file was created which contained a table of weighting parameters for calculating the interpolated values for every point within the outline. Each weight was in inverse linear proportion to the distance of the pixel to the nearest four electrodes. The map was finally generated with computation of the spectral EEG in each pixel according to the weighting parameter. The functioning of this system was tested with a functional generator and a human subject.
机译:作者使用IBM PC AT开发了计算机化的脑电图成像系统。用16通道脑电图仪放大的脑电图信号以51.2 Hz的频率数字化(每个时期512个样本)。通过高通滤波器和60Hz陷波滤波器消除了偏移的DC电位和60Hz关节。通过用余弦钟对历元任一端的点进行加权,可以获得由10%余弦锥度组成的窗函数。将快速傅立叶变换应用于每个时期,并以0.39 Hz的步长计算功率谱估计。 δ,θ,α和β谱带的活度估计值是通过summimg相邻值来计算的。由一系列矢状切面形成了自上而下的地图轮廓,然后在地图上放置了32个电极。创建了一个文件,其中包含一个权重参数表,用于计算轮廓内每个点的插值。每个权重与像素到最近的四个电极的距离成反线性比例。最终通过根据加权参数计算每个像素中的频谱EEG来生成该图。该系统的功能已通过功能发生器和人类受试者进行了测试。

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