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Performance of Fourier versus Wavelet analysis for magnetocardiograms using a SQUID-acquisition system

机译:使用鱿鱼采集系统对磁进函数的傅里叶与小波分析的性能

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A lately developed clinical investigation method for the diagnosis of heart disease, the magnetocardiogram (MCG) is described in this paper. Sensitive sensors based on Superconducting Quantum Interference Devices (SQUID), developed at IPHT-Jena, Germany are used for the acquisition of reliable data. MCGs are sensitive to magnetic interferences and procedures in order to enhance the signal-to-noise ratio have to be developed. The paper aims at the comparison of the performance of Fourier versus Wavelet analysis applied to the input signal in order to enable the choice of the optimal processing technique for MCGs, advantages and drawbacks of each procedure being shown. A wavelet based baseline drift correction method and a denoising technique for the reduction of the biological noise of MCGs have been developed and compared to the Fourier based filtering procedure from IPHT-Jena.
机译:最近开发了诊断心脏病的临床调查方法,本文描述了磁进素(MCG)。 基于超导量子干扰装置(鱿鱼)的敏感传感器,德国在IPHT-Jena开发,用于获取可靠数据。 MCGS对磁干扰和程序敏感,以提高必须开发的信噪比。 本文旨在比较傅立叶与对输入信号的小波分析的性能的比较,以便能够选择用于MCG的最佳处理技术,所示的每个过程的优点和缺点。 已经开发了一种基于小波的基线漂移校正方法和用于减少MCG生物噪声的去噪技术,并与来自IPHT-JENA的傅立叶的滤波过程相比。

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