A microcomputer-based system for mapping EEG signals after source derivation

A. Infantosi, A. Almeida
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引用次数: 5

Abstract

The EEG (electroencephalogram) data are obtained as a set of up to 16 unipolar derivations, sampled and displayed in real time, before storing on disk. The source derivation technique counteracts the smearing of the electrical fields as measured on the scalp and thus improves the spatial selectivity of mapping. It is calculated using the finite difference method, assuming a uniform grid of electrodes or alternatively a non-uniform grid. Source derivation is applied to the data before estimating the power spectral density function (using FFT) from selected epochs of the signals. Spectral parameters can then be extracted and mapped on a surface corresponding to the lateral projection of a brain hemisphere. Spatial interpolation is employed to estimate the parameter values at points where no electrodes are located. The brain topograms are then exhibited on the computer monitor. The software was written in PASCAL with time-critical routines in assembly language.<>
一种基于微机的脑电信号源推导后映射系统
EEG(脑电图)数据作为一组多达16个单极衍生,采样和实时显示,然后存储在磁盘上。源衍生技术抵消了在头皮上测量的电场的涂抹,从而提高了映射的空间选择性。它是用有限差分法计算的,假设一个均匀的电极网格或一个非均匀的网格。在从信号的选定时代估计功率谱密度函数(使用FFT)之前,对数据进行源推导。然后可以提取光谱参数并将其映射到与大脑半球的横向投影相对应的表面上。采用空间插值法估计无电极处的参数值。大脑的拓扑图随后显示在电脑显示器上。软件用PASCAL编写,程序用汇编语言编写。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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