AbstractThe degeneration of a regular heart rhythm into fibrillation (a chaotic or chaos-like sequence) can proceed via several classical routes described by nonlinear dynamics: period-doubling, quasiperiodicity, or intermittency. In this study, we experimentally examine one aspect of cardiac excitation dynamics, the long-term evolution of intracellular calcium signals in cultured cardiomyocyte networks subjected to increasingly faster pacing rates via field stimulation. In this spatially extended system, we observed alternans and higher-order periodicities, extra beats, and skipped beats or blocks. Calcium instabilities evolved nonmonotonically with the prevalence of phase-locking or Wenckebach rhythm, low-frequency magnitude modulations (...
Spatially discordant alternans (SDA) of action potential duration (APD) is a phenomenon where differ...
AbstractWe present a mathematical model of calcium cycling that takes into account the spatially loc...
Calcium (Ca(2+)) waves generating oscillatory Ca(2+) signals are widely observed in biological cells...
ABSTRACT The degeneration of a regular heart rhythm into fibrillation (a chaotic or chaos-like seque...
AbstractThe degeneration of a regular heart rhythm into fibrillation (a chaotic or chaos-like sequen...
Cardiac myocytes are excitable cells in which an external current stimulus depolarizes the membr...
The study of cardiac alternans, a phenomenon characterized by beat-to-beat alternations of activity ...
In this study, we analyze a nonlinear map model of intracellular calcium (Ca) and voltage in cardiac...
Spatially discordant alternans (SDA) of action potential duration (APD) is a phenomenon where differ...
<div><p>Spatially discordant alternans (SDA) of action potential duration (APD) is a phenomenon wher...
Abstract—Optical mapping of intact cardiac tissue reveals that, in some cases, intracellular calcium...
Spatially discordant alternans (SDA) of action potential duration (APD) is a phenomenon where differ...
Abnormal calcium (Ca) cycling conditions in cardiac myocytes have been identified as a major contrib...
Abnormal calcium (Ca) cycling conditions in cardiac myocytes have been identified as a major contrib...
Spatially discordant alternans (SDA) of action potential duration (APD) is a phenomenon where differ...
Spatially discordant alternans (SDA) of action potential duration (APD) is a phenomenon where differ...
AbstractWe present a mathematical model of calcium cycling that takes into account the spatially loc...
Calcium (Ca(2+)) waves generating oscillatory Ca(2+) signals are widely observed in biological cells...
ABSTRACT The degeneration of a regular heart rhythm into fibrillation (a chaotic or chaos-like seque...
AbstractThe degeneration of a regular heart rhythm into fibrillation (a chaotic or chaos-like sequen...
Cardiac myocytes are excitable cells in which an external current stimulus depolarizes the membr...
The study of cardiac alternans, a phenomenon characterized by beat-to-beat alternations of activity ...
In this study, we analyze a nonlinear map model of intracellular calcium (Ca) and voltage in cardiac...
Spatially discordant alternans (SDA) of action potential duration (APD) is a phenomenon where differ...
<div><p>Spatially discordant alternans (SDA) of action potential duration (APD) is a phenomenon wher...
Abstract—Optical mapping of intact cardiac tissue reveals that, in some cases, intracellular calcium...
Spatially discordant alternans (SDA) of action potential duration (APD) is a phenomenon where differ...
Abnormal calcium (Ca) cycling conditions in cardiac myocytes have been identified as a major contrib...
Abnormal calcium (Ca) cycling conditions in cardiac myocytes have been identified as a major contrib...
Spatially discordant alternans (SDA) of action potential duration (APD) is a phenomenon where differ...
Spatially discordant alternans (SDA) of action potential duration (APD) is a phenomenon where differ...
AbstractWe present a mathematical model of calcium cycling that takes into account the spatially loc...
Calcium (Ca(2+)) waves generating oscillatory Ca(2+) signals are widely observed in biological cells...