AbstractMany cardiac diseases coincide with changes in cell size and shape. One example of such a disease is cardiac hypertrophy. It is established that cardiac impulse propagation depends on the cell size, as well as other factors, but interrelations between conduction velocity (CV), cell size, and gap junction (GJ) conductance (gGJ) are complex. Furthermore, cardiac diseases are often accompanied by connexin (Cx) lateralization. To analyze the effects of cell size and Cx lateralization in cardiac disease, a two-dimensional computer simulation of ventricular myocytes based on the Luo-Rudy model was used. Control cells (80 μm/20 μm (length/diameter)), long cells (160 μm/20 μm), and wide cells (80 μm/40 μm) were simulated as was a redistribu...
<p>Cardiac arrhythmias triggered by both reentrant and focal sources are closely correlated with reg...
AbstractIonic channels and gap junctions are remodeled in cells from the 5-day epicardial border zon...
variations in repolarization currents in the heart can produce spatial gradients in action potential...
AbstractMany cardiac diseases coincide with changes in cell size and shape. One example of such a di...
Aims To use microstructural computer models to study how four features of myocardial architecture af...
Altered gap junctional coupling potentiates slow conduction and arrhythmias. To better understand ho...
he aim of this thesis is to analyze the effects of time variations of the gap junctions (GJ) conduct...
Objective: Unidirectional conduction block in the heart can occur at a site where the impulse is tra...
<p>The role of cardiac tissue structure in both normal and abnormal impulse conduction has been exte...
When modelling tissue-level cardiac electrophysiology, a continuum approximation to the discrete cel...
Connexins, the protein molecules forming gap junction channels, are reduced in number or redistribut...
Gap junctions are membrane channels that connect the cytoplasm of adjacent cells allowing the cell-t...
Gap junctions are membrane channels that connect the cytoplasm of adjacent cells allowing the cell-t...
<p>Computational modeling is an important tool to advance our knowledge on cardiac diseases and thei...
Background—We tested the hypothesis that alterations to action potential conduction velocity (CV) an...
<p>Cardiac arrhythmias triggered by both reentrant and focal sources are closely correlated with reg...
AbstractIonic channels and gap junctions are remodeled in cells from the 5-day epicardial border zon...
variations in repolarization currents in the heart can produce spatial gradients in action potential...
AbstractMany cardiac diseases coincide with changes in cell size and shape. One example of such a di...
Aims To use microstructural computer models to study how four features of myocardial architecture af...
Altered gap junctional coupling potentiates slow conduction and arrhythmias. To better understand ho...
he aim of this thesis is to analyze the effects of time variations of the gap junctions (GJ) conduct...
Objective: Unidirectional conduction block in the heart can occur at a site where the impulse is tra...
<p>The role of cardiac tissue structure in both normal and abnormal impulse conduction has been exte...
When modelling tissue-level cardiac electrophysiology, a continuum approximation to the discrete cel...
Connexins, the protein molecules forming gap junction channels, are reduced in number or redistribut...
Gap junctions are membrane channels that connect the cytoplasm of adjacent cells allowing the cell-t...
Gap junctions are membrane channels that connect the cytoplasm of adjacent cells allowing the cell-t...
<p>Computational modeling is an important tool to advance our knowledge on cardiac diseases and thei...
Background—We tested the hypothesis that alterations to action potential conduction velocity (CV) an...
<p>Cardiac arrhythmias triggered by both reentrant and focal sources are closely correlated with reg...
AbstractIonic channels and gap junctions are remodeled in cells from the 5-day epicardial border zon...
variations in repolarization currents in the heart can produce spatial gradients in action potential...