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首页> 外文期刊>Journal of medical engineering & technology >Frequency-plane analysis of normal and pathological ECG signals for disease identification.
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Frequency-plane analysis of normal and pathological ECG signals for disease identification.

机译:正常和病理性ECG信号的频率平面分析,用于疾病识别。

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摘要

In this paper a frequency plane analysis of both normal and diseased ECG signals is performed specifically for disease identification. Image processing techniques are used to develop an automated data acquisition package of 12 lead ECG signals from paper records. A regeneration domain is also developed to check the captured pattern with the original wave shape. A QRS complex detector with an accuracy level approximately 98.4% in up to 30% signal to noise level is developed. Discrete Fourier transform (DFT) is performed to obtain the frequency spectrum of every ECG signal. Some interesting amplitude and phase response properties of chest lead V2, V3, V4, V6 and limb lead I, II, III, AVL, AVF are seen. Both amplitude and phase properties are different for normal and diseased subjects and can serve an important role in disease identification. A statistical analysis of amplitude property is carried out to show that this property is significantly different for normal and diseased subjects.
机译:本文针对正常和患病的ECG信号进行了频率平面分析,专门用于疾病识别。图像处理技术用于开发自动数据采集程序包,该程序包包含来自纸质记录的12种前导ECG信号。还开发了一个再生域,以检查具有原始波形的捕获模式。开发了一种QRS复杂检测器,其准确度等级高达98.4%,信噪比高达30%。执行离散傅立叶变换(DFT),以获得每个ECG信号的频谱。可以看到胸部导线V2,V3,V4,V6和肢体导线I,II,III,AVL,AVF的一些有趣的幅度和相位响应特性。正常人和患病受试者的幅度和相位特性都不同,并且可以在疾病识别中发挥重要作用。进行了振幅特性的统计分析,以表明该特性对于正常人和患病受试者都存在显着差异。

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