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首页> 外文期刊>St. Petersburg Polytechnic University Journal: Physics and Mathematics >A novel physico-mathematical technique of analyzing the quantitative electroencephalograms development and application
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A novel physico-mathematical technique of analyzing the quantitative electroencephalograms development and application

机译:一种分析定量脑电图开发和应用的新型物理数学技术

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The article presents a physical and mathematical model developed by the authors. The model allows analyzing the amplitude-frequency characteristic (AFC) of electroencephalograms (EEG) of a human brain. The proposed method of EEG processing, in contrast to the previously used one, is based on approximating the AFC by an equation that contains a set of coefficients. This method is convenient for comparing data obtained from different subjects and, as found, has diagnostic significance. Previously, only the frequency / amplitude ratio or its inverse was used for evaluations. The results achieved indicate the possibility of differentiating patients of various neuropsychic profiles according to the values of the parametric indicators obtained by approximating the EEG amplitude-frequency response.
机译:本文介绍了作者开发的物理和数学模型。该模型允许分析人脑的脑电图(EEG)的幅度频率特性(AFC)。与先前使用的,eEG处理的所提出的eEG处理方法基于近似于包含一组系数的等式的AFC。该方法方便比较从不同受试者获得的数据,并且如发现的那样具有诊断意义。以前,仅使用频率/幅度比或其逆进行评估。所实现的结果表明根据通过近似EEG幅度频率响应获得的参数指示器的值来区分各种神经仪谱的患者的可能性。

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