In cardiac electrophysiology, there exist many sources of inter- and intra-personal variability. These include variability in conditions and environment, and genotypic and molecular diversity, including differences in expression and behavior of ion channels and transporters, which lead to phenotypic diversity (e.g., variable integrated responses at the cell, tissue, and organ levels). These variabilities play an important role in progression of heart disease and arrhythmia syndromes and outcomes of therapeutic interventions. Yet, the traditional in silico framework for investigating cardiac arrhythmias is built upon a parameter/property-averaging approach that typically overlooks the physiological diversity. Inspired by work done in genetic...
Physiological variability manifests itself via differences in physiological function between individ...
International audienceSafety pharmacology aims to predict rare side effects of new drugs. We explore...
The traditional cardiac model-building paradigm involves constructing a composite model using data c...
In cardiac electrophysiology, there exist many sources of inter- and intra-personal variability. The...
The underlying causes of variability in the electrical activity of hearts from individuals of the sa...
The underlying causes of variability in the electrical activity of hearts from individuals of the sa...
Physiological variability manifests itself via differences in physiological function between individ...
Physiological variability manifests itself via differences in physiological function between individ...
Physiological variability manifests itself via differences in physiological function between individ...
Physiological variability manifests itself via differences in physiological function between individ...
AbstractPhysiological variability manifests itself via differences in physiological function between...
Iteration between computational and experimental physiology has largely contributed to expanding sci...
Iteration between computational and experimental physiology has largely contributed to expanding sci...
Sudden cardiac death (SCD) is one of the largest causes of natural mortality throughout the world. S...
Sudden cardiac death (SCD) is one of the largest causes of natural mortality throughout the world. S...
Physiological variability manifests itself via differences in physiological function between individ...
International audienceSafety pharmacology aims to predict rare side effects of new drugs. We explore...
The traditional cardiac model-building paradigm involves constructing a composite model using data c...
In cardiac electrophysiology, there exist many sources of inter- and intra-personal variability. The...
The underlying causes of variability in the electrical activity of hearts from individuals of the sa...
The underlying causes of variability in the electrical activity of hearts from individuals of the sa...
Physiological variability manifests itself via differences in physiological function between individ...
Physiological variability manifests itself via differences in physiological function between individ...
Physiological variability manifests itself via differences in physiological function between individ...
Physiological variability manifests itself via differences in physiological function between individ...
AbstractPhysiological variability manifests itself via differences in physiological function between...
Iteration between computational and experimental physiology has largely contributed to expanding sci...
Iteration between computational and experimental physiology has largely contributed to expanding sci...
Sudden cardiac death (SCD) is one of the largest causes of natural mortality throughout the world. S...
Sudden cardiac death (SCD) is one of the largest causes of natural mortality throughout the world. S...
Physiological variability manifests itself via differences in physiological function between individ...
International audienceSafety pharmacology aims to predict rare side effects of new drugs. We explore...
The traditional cardiac model-building paradigm involves constructing a composite model using data c...