Comprehension of the beating of the human heart is important for cardiac research and will improve many clinical applications. Simulations based on models describing cardiac electro-mechanics can acquire insights into this behavior. This work focuses on the mathematical reconstruction of electrophysiology, excitation conduction, and tension development in the human heart on the cellular and the tissue level. The tissue models represent accurate anatomical shapes of the atria and the ventricles and incorporate electrophysiological heterogeneity and anisotropic conduction. The simulations comprehend the physiological behavior of the ventricles and of the atrium including the sinoatrial node as well as pathological cases like ventricular...
Computational models of human atrial cells, tissues and atria have been developed. Cell models, for ...
In this study we present a novel computational model for unprecedented simulations of the whole card...
For over 100 years cardiac electrophysiology has been measured in the clinic. The electrical signals...
Comprehension of the beating of the human heart is important for cardiac research and will improve m...
Modeling of cardiac electro-mechanics can enhance the understanding of the physiology and pathophysi...
iv The heart is an essential heterogeneous organ that depends on strong coupling be-tween electrical...
This paper deals with the mathematical model that describes the function of the human heart. More sp...
International audienceThis work is dedicated to the simulation of full cycles of the electrical acti...
Intracellular action potentials were recorded from rabbit heart sinoatrial node (SAN) and atrial int...
on new research directions needed to develop integrative approaches to elucidate human cardiac funct...
An accurate understanding of cardiac function necessitates the knowledge of regulation of electromec...
Abstract—Although considerable progress has been made in understanding the process of wavefront prop...
Models of cardiac electrical activity cover a wide range of spatial scales, from the genesis of the ...
The complexity of the heart makes an intuitive understanding of the relative contribution of ion cha...
Cardiac tissue is a syncytium of coupled cells with pronounced intrinsic discrete nature. Previous m...
Computational models of human atrial cells, tissues and atria have been developed. Cell models, for ...
In this study we present a novel computational model for unprecedented simulations of the whole card...
For over 100 years cardiac electrophysiology has been measured in the clinic. The electrical signals...
Comprehension of the beating of the human heart is important for cardiac research and will improve m...
Modeling of cardiac electro-mechanics can enhance the understanding of the physiology and pathophysi...
iv The heart is an essential heterogeneous organ that depends on strong coupling be-tween electrical...
This paper deals with the mathematical model that describes the function of the human heart. More sp...
International audienceThis work is dedicated to the simulation of full cycles of the electrical acti...
Intracellular action potentials were recorded from rabbit heart sinoatrial node (SAN) and atrial int...
on new research directions needed to develop integrative approaches to elucidate human cardiac funct...
An accurate understanding of cardiac function necessitates the knowledge of regulation of electromec...
Abstract—Although considerable progress has been made in understanding the process of wavefront prop...
Models of cardiac electrical activity cover a wide range of spatial scales, from the genesis of the ...
The complexity of the heart makes an intuitive understanding of the relative contribution of ion cha...
Cardiac tissue is a syncytium of coupled cells with pronounced intrinsic discrete nature. Previous m...
Computational models of human atrial cells, tissues and atria have been developed. Cell models, for ...
In this study we present a novel computational model for unprecedented simulations of the whole card...
For over 100 years cardiac electrophysiology has been measured in the clinic. The electrical signals...