Experimental studies on isolated cardiomyocytes from different animal species and human hearts have demonstrated that there are regional differences in the Ca2+release, Ca2+decay and sarcomere deformation. Local deformation heterogeneities can occur due to a combination of factors: regional/local differences in Ca2+release and/or re-uptake, intra-cellular material properties, sarcomere proteins and distribution of the intracellular organelles. To investigate the possible causes of these heterogeneities, we developed a two-dimensional finite-element electromechanical model of a cardiomyocyte that takes into account the experimentally measured local deformation and cytosolic [Ca2+] to locally define the different variables of the constitutive...
Determining transmural mechanical properties in the heart provides a foundation to understand physio...
Experiments on animal hearts (rat, rabbit, guinea pig, etc.) have demonstrated that mechano-calcium ...
Spatio-temporal dynamics of intracellular calcium, [Ca2+]i, regulate the contractile function of car...
Experimental studies on isolated cardiomyocytes from different animal species and human hearts have ...
Experimental studies on isolated cardiomyocytes from different animal species and human hearts have ...
Experimental studies on isolated cardiomyocytes from different animal species and human hearts have ...
Introduction. Cardiovascular functions are usually studied via the contribution of several concurren...
Heterogeneity of myocardium proved to be important for understanding heart physiology and pathophysi...
In this paper we studied the mechanics and physiology occurring during the contraction of a 2D syncy...
Dyssynchronous local Ca release within individual cardiac myocytes has been linked to cellular contr...
International audienceIsolated cardiac myocytes exhibit spontaneous patterns of rhythmic contraction...
Heart failure is the leading cause of death in the world and yet the mechanisms of disease progressi...
The heart is arguably the most important organ in the body. It works tirelessly every minute of our...
AIM: The aim of this study is to develop a coupled three-dimensional computational model of cardiac ...
Published onlineJournal ArticleResearch Support, Non-U.S. Gov'tSpatio-temporal dynamics of intracell...
Determining transmural mechanical properties in the heart provides a foundation to understand physio...
Experiments on animal hearts (rat, rabbit, guinea pig, etc.) have demonstrated that mechano-calcium ...
Spatio-temporal dynamics of intracellular calcium, [Ca2+]i, regulate the contractile function of car...
Experimental studies on isolated cardiomyocytes from different animal species and human hearts have ...
Experimental studies on isolated cardiomyocytes from different animal species and human hearts have ...
Experimental studies on isolated cardiomyocytes from different animal species and human hearts have ...
Introduction. Cardiovascular functions are usually studied via the contribution of several concurren...
Heterogeneity of myocardium proved to be important for understanding heart physiology and pathophysi...
In this paper we studied the mechanics and physiology occurring during the contraction of a 2D syncy...
Dyssynchronous local Ca release within individual cardiac myocytes has been linked to cellular contr...
International audienceIsolated cardiac myocytes exhibit spontaneous patterns of rhythmic contraction...
Heart failure is the leading cause of death in the world and yet the mechanisms of disease progressi...
The heart is arguably the most important organ in the body. It works tirelessly every minute of our...
AIM: The aim of this study is to develop a coupled three-dimensional computational model of cardiac ...
Published onlineJournal ArticleResearch Support, Non-U.S. Gov'tSpatio-temporal dynamics of intracell...
Determining transmural mechanical properties in the heart provides a foundation to understand physio...
Experiments on animal hearts (rat, rabbit, guinea pig, etc.) have demonstrated that mechano-calcium ...
Spatio-temporal dynamics of intracellular calcium, [Ca2+]i, regulate the contractile function of car...