We present a comprehensive numerical study of spiral-and scroll-wave dynamics in a state-of-the-art mathematical model for human ventricular tissue with fiber rotation, transmural heterogeneity, myocytes, and fibroblasts. Our mathematical model introduces fibroblasts randomly, to mimic diffuse fibrosis, in the ten Tusscher-Noble-Noble-Panfilov (TNNP) model for human ventricular tissue; the passive fibroblasts in our model do not exhibit an action potential in the absence of coupling with myocytes; and we allow for a coupling between nearby myocytes and fibroblasts. Our study of a single myocyte-fibroblast (MF) composite, with a single myocyte coupled to fibroblasts via a gap-junctional conductance , reveals five qualitatively different resp...
Cardiac fibroblasts, when coupled functionally with myocytes, can modulate the electrophysiological ...
We study the dynamical behaviors of two types of spiral-and scroll-wave turbulence states, respectiv...
Fibroblast-myocyte coupling can modulate electrical-wave dynamics in cardiac tissue. In diseased hea...
We present a comprehensive numerical study of spiral-and scroll-wave dynamics in a state-of-the-art ...
We present a comprehensive numerical study of spiral- and scroll-wave dynamics in a state-of-the-art...
<div><p>We present a comprehensive numerical study of spiral-and scroll-wave dynamics in a state-of-...
We present a comprehensive numerical study of spiral-and scroll-wave dynamics in a state-of-the-art ...
We present a comprehensive numerical study of spiral-and scroll-wave dynamics in a state-of-the-art ...
We present a comprehensive numerical study of spiral-and scroll-wave dynamics in a state-of-the-art ...
Cardiac fibroblasts, when coupled functionally with myocytes, can modulate the electrophysiological ...
Cardiac fibroblasts, when coupled functionally with myocytes, can modulate the electrophysiological ...
Cardiac fibroblasts, when coupled functionally with myocytes, can modulate the electrophysiological ...
<div><p>Cardiac fibroblasts, when coupled functionally with myocytes, can modulate the electrophysio...
Cardiac fibroblasts, when coupled functionally with myocytes, can modulate the electrophysiological ...
Cardiac fibroblasts, when coupled functionally with myocytes, can modulate the electrophysiological ...
Cardiac fibroblasts, when coupled functionally with myocytes, can modulate the electrophysiological ...
We study the dynamical behaviors of two types of spiral-and scroll-wave turbulence states, respectiv...
Fibroblast-myocyte coupling can modulate electrical-wave dynamics in cardiac tissue. In diseased hea...
We present a comprehensive numerical study of spiral-and scroll-wave dynamics in a state-of-the-art ...
We present a comprehensive numerical study of spiral- and scroll-wave dynamics in a state-of-the-art...
<div><p>We present a comprehensive numerical study of spiral-and scroll-wave dynamics in a state-of-...
We present a comprehensive numerical study of spiral-and scroll-wave dynamics in a state-of-the-art ...
We present a comprehensive numerical study of spiral-and scroll-wave dynamics in a state-of-the-art ...
We present a comprehensive numerical study of spiral-and scroll-wave dynamics in a state-of-the-art ...
Cardiac fibroblasts, when coupled functionally with myocytes, can modulate the electrophysiological ...
Cardiac fibroblasts, when coupled functionally with myocytes, can modulate the electrophysiological ...
Cardiac fibroblasts, when coupled functionally with myocytes, can modulate the electrophysiological ...
<div><p>Cardiac fibroblasts, when coupled functionally with myocytes, can modulate the electrophysio...
Cardiac fibroblasts, when coupled functionally with myocytes, can modulate the electrophysiological ...
Cardiac fibroblasts, when coupled functionally with myocytes, can modulate the electrophysiological ...
Cardiac fibroblasts, when coupled functionally with myocytes, can modulate the electrophysiological ...
We study the dynamical behaviors of two types of spiral-and scroll-wave turbulence states, respectiv...
Fibroblast-myocyte coupling can modulate electrical-wave dynamics in cardiac tissue. In diseased hea...