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Clinical Usefulness of ECG Frequency Spectrum Analysis

机译:心电图频谱分析的临床实用性

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摘要

The QRS portion of the electrocardiogram of the complexes of patients were sampled at the rate of 1024 samples per second. The power spectral densities were calculated using the fast Fourier transform on a quarter of a second portion of an FM recorded ECG, centered on the peak of the R wave. It was discovered that in a typical QRS complex of normal duration, virtually all of the power is contained in frequencies below 30 Hz with peak power occurring in the range of 4 to 12 Hz. It should be noted that the frequency corresponding to the location of the peak is the heart rate of the patient. Furthermore, most noticeably, premature ventricular contractions typically contain less high frequency power than normal beats, with virtually all the power contained in frequencies below 12 Hz with peak power located at about 4 Hz. Finally, notches in some QRS complexes was associated with a broadened distribution of power in the power spectral density even though the tail from 30-100 Hz contained relatively less power than that contained in the frequency band below 30 Hz.
机译:以每秒1024个样本的速率对患者复合物的心电图的QRS部分进行采样。功率谱密度是使用快速傅立叶变换在FM记录的ECG的第二部分的四分之一处(以R波的峰值为中心)计算得出的。已经发现,在正常持续时间的典型QRS复合波中,实际上所有功率都包含在30 Hz以下的频率中,峰值功率发生在4至12 Hz的范围内。应当注意,与峰值位置相对应的频率是患者的心率。此外,最明显的是,室性早搏通常比正常搏动包含的高频能量要少,实际上所有能量都包含在低于12 Hz的频率中,峰值能量约为4 Hz。最后,即使在30-100 Hz的尾部包含的功率比30 Hz以下的频带中包含的功率相对较少,某些QRS络合物中的陷波与功率谱密度中功率的分布扩大有关。

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