International audienceA model of the guinea-pig cardiac ventricular myocyte has been developed that includes a representation of the transverse-axial tubular system (TATS), including heterogeneous distribution of ion flux pathways between the surface and tubular membranes. The model reproduces frequency-dependent changes of action potential shape and intracellular ion concentrations and can replicate experimental data showing ion diffusion between the tubular lumen and external solution in guinea-pig myocytes. The model is stable at rest and during activity and returns to rested state after perturbation. Theoretical analysis and model simulations show that, due to tight electrical coupling, tubular and surface membranes behave as a homogene...
AbstractWe have developed a detailed mathematical model for Ca2+ handling and ionic currents in the ...
The t-tubules of mammalian ventricular myocytes are invaginations of the cell membrane that occur at...
Abstract: We have developed a computer model of human cardiac ventricular myocyte (CVM), including t...
International audienceA model of the guinea-pig cardiac ventricular myocyte has been developed that ...
The transverse-axial tubular system (TAT-system) of cardiac muscle is a structure that allows rapid ...
A novel quantitative model of a guinea-pig ventricular myocyte has been designed with transverse-axi...
A mathematical model of human ventricular cell incorporating the transverse axial tubular system (TA...
International audienceThe transverse-axial tubular system (TATS) of cardiac ventricular myocytes is ...
In this work, we present a new version of cardiac ventricular cell model incorporating the transvers...
In this work, we explored the extent of ion concentration changes in the transverse-axial tubular sy...
Heterogeneity of myocardium proved to be important for understanding heart physiology and pathophysi...
We present a design of a model of rat ventricular cardiomyocyte with transverse-axial tubular system...
The paper presents a new description of intracellular Ca2+ dynamics in the model of rat ventricular ...
Intracellular Ca2+ load and Ca2+ transient are considerably dependent on distribution of sarcolemmal...
In this work, we explored quantitatively the effect of ion concentration changes in the restricted s...
AbstractWe have developed a detailed mathematical model for Ca2+ handling and ionic currents in the ...
The t-tubules of mammalian ventricular myocytes are invaginations of the cell membrane that occur at...
Abstract: We have developed a computer model of human cardiac ventricular myocyte (CVM), including t...
International audienceA model of the guinea-pig cardiac ventricular myocyte has been developed that ...
The transverse-axial tubular system (TAT-system) of cardiac muscle is a structure that allows rapid ...
A novel quantitative model of a guinea-pig ventricular myocyte has been designed with transverse-axi...
A mathematical model of human ventricular cell incorporating the transverse axial tubular system (TA...
International audienceThe transverse-axial tubular system (TATS) of cardiac ventricular myocytes is ...
In this work, we present a new version of cardiac ventricular cell model incorporating the transvers...
In this work, we explored the extent of ion concentration changes in the transverse-axial tubular sy...
Heterogeneity of myocardium proved to be important for understanding heart physiology and pathophysi...
We present a design of a model of rat ventricular cardiomyocyte with transverse-axial tubular system...
The paper presents a new description of intracellular Ca2+ dynamics in the model of rat ventricular ...
Intracellular Ca2+ load and Ca2+ transient are considerably dependent on distribution of sarcolemmal...
In this work, we explored quantitatively the effect of ion concentration changes in the restricted s...
AbstractWe have developed a detailed mathematical model for Ca2+ handling and ionic currents in the ...
The t-tubules of mammalian ventricular myocytes are invaginations of the cell membrane that occur at...
Abstract: We have developed a computer model of human cardiac ventricular myocyte (CVM), including t...