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Quantification of Beat-To-Beat Variability of Action Potential Durations in Langendorff-Perfused Mouse Hearts

  • Gary Tse*
  • , Yimei Du
  • , Guoliang Hao
  • , Ka Hou Christien Li
  • , Fiona Yin Wah Chan
  • , Tong Liu
  • , Guangping Li
  • , George Bazoukis
  • , Konstantinos P. Letsas
  • , William K. K. Wu
  • , Shuk Han Cheng*
  • , Wing Tak Wong*
  • *Corresponding author for this work

Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review

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Abstract

Background: Beat-to-beat variability in action potential duration (APD) is an intrinsic property of cardiac tissue and is altered in pro-arrhythmic states. However, it has never been examined in mice.

Methods: Left atrial or ventricular monophasic action potentials (MAPs) were recorded from Langendorff-perfused mouse hearts during regular 8 Hz pacing. Time-domain, frequency-domain and non-linear analyses were used to quantify APD variability.

Results: Mean atrial APD (90% repolarization) was 23.5 ± 6.3 ms and standard deviation (SD) was 0.9 ± 0.5 ms (n = 6 hearts). Coefficient of variation (CoV) was 4.0 ± 1.9% and root mean square (RMS) of successive differences in APDs was 0.3 ± 0.2 ms. The peaks for low- and high-frequency were 0.7 ± 0.5 and 2.7 ± 0.9 Hz, respectively, with percentage powers of 39.0 ± 20.5 and 59.3 ± 22.9%. Poincaré plots of APDn+1 against APDn revealed ellipsoid shapes. The ratio of the SD along the line-of-identity (SD2) to the SD perpendicular to the line-of-identity (SD1) was 8.28 ± 4.78. Approximate and sample entropy were 0.57 ± 0.12 and 0.57 ± 0.15, respectively. Detrended fluctuation analysis revealed short- and long-term fluctuation slopes of 1.80 ± 0.15 and 0.85 ± 0.29, respectively. When compared to atrial APDs, ventricular APDs were longer (ANOVA, P < 0.05), showed lower mean SD and CoV but similar RMS of successive differences in APDs and showed lower SD2 (P < 0.05). No difference in the remaining parameters was observed.

Conclusion: Beat-to-beat variability in APD is observed in mouse hearts during regular pacing. Atrial MAPs showed greater degree of variability than ventricular MAPs. Non-linear techniques offer further insights on short-term and long-term variability and signal complexity.

Original languageEnglish
Article number1578
JournalFrontiers in Physiology
Volume9
Online published27 Nov 2018
DOIs
Publication statusPublished - Nov 2018

Research Keywords

  • variability
  • repolarization
  • time
  • frequency
  • non-linear
  • entropy
  • SHORT-TERM VARIABILITY
  • TIME-SERIES ANALYSIS
  • R INTERVAL DYNAMICS
  • VENTRICULAR REPOLARIZATION
  • APPROXIMATE ENTROPY
  • COMPLEXITY
  • IRREGULARITY
  • DISPERSION
  • RECORDINGS
  • PREDICTOR

Publisher's Copyright Statement

  • This full text is made available under CC-BY 4.0. https://creativecommons.org/licenses/by/4.0/

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