High-fidelity, unfiltered ECG recordings reveal that the true shape of the P wave is highly irregular and complex, contrary to the smooth appearance seen in standard filtered ECGs.
BACKGROUND: P waves reported in electrocardiology literature uniformly appear smooth. Computer simulation and signal analysis studies have shown much more complex shapes. OBJECTIVE: We systematically investigated P-wave complexity in normal volunteers using high-fidelity electrocardiographic techniques without filtering. METHODS: We recorded 5-min multichannel ECGs in 16 healthy volunteers. Noise and interference were reduced by averaging over 300 beats per recording. In addition, normal P waves were simulated with a realistic model of the human atria. RESULTS: Measured P waves had an average of 4.1 peaks (range 1-10) that were reproducible between recordings. Simulated P waves demonstrated similar complexity, which was related to structural discontinuities in the computer model of the atria. CONCLUSION: The true shape of the P wave is very irregular and is best seen in ECGs averaged over many beats.
Potse et al. (Thu,) studied this question.