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January 1, 2004IEEE Transactions on Biomedical Engineering149 citations

Sequential Characterization of Atrial Tachyarrhythmias Based on ECG Time-Frequency Analysis

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MSMartin StridhLSL. SörnmoCMCarl Meurling

Structured PICO

Does a time-frequency distribution-based method improve the characterization of atrial tachyarrhythmias compared to conventional power spectrum?

P
Population
251 subjects, comprising a learning database of 40 subjects (24 with atrial arrhythmias) and an evaluation database of 211 patients diagnosed with atrial fibrillation.
I
Intervention
Time-frequency distribution analysis of atrial electrocardiographic signals using frequency-shifting of an adaptively updated spectral profile.
C
Comparator
Conventional power spectrum analysis.
O
Outcome
Estimation of fibrillation frequency and amplitude, and production of spectral profiles.surrogate

A novel time-frequency analysis method for atrial ECG signals robustly estimates fibrillation frequency and amplitude, potentially aiding automated classification of atrial rhythms.

Abstract

A new method for characterization of atrial arrhythmias is presented which is based on the time-frequency distribution of an atrial electrocardiographic signal. A set of parameters are derived which describe fundamental frequency, amplitude, shape, and signal-to-noise ratio. The method uses frequency-shifting of an adaptively updated spectral profile, representing the shape of the atrial waveforms, in order to match each new spectrum of the distribution. The method tracks how well the spectral profile fits each spectrum as well as if a valid atrial signal is present. The results are based on the analysis of a learning database with signals from 40 subjects, of which 24 have atrial arrhythmias, and an evaluation database with 211 patients diagnosed with atrial fibrillation. It is shown that the method robustly estimates fibrillation frequency and amplitude and produces spectral profiles with narrower peaks and more discernible harmonics when compared to the conventional power spectrum. The results suggest that a rather strong correlation exist between atrial fibrillation frequency and f wave shape. The developed set of parameters may be used as a basis for automated classification of different atrial rhythms.

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Cite This Study

Stridh et al. (2004) studied this question.

synapsesocial.com/papers/6a2419054e11633d95ab361chttps://doi.org/10.1109/tbme.2003.820331
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