Agent-based models (ABMs) represent a novel approach to study and simulate complex mechano-chemo-biological responses at the cellular level. Such models have been used, for example, to simulate a variety of emergent responses in the vasculature, including angiogenesis and vasculogenesis. Although not used previously to study large vessel adaptations, we submit that ABMs will prove equally useful in such studies when combined with well-established continuum models to form multi-scale models of tissue-level phenomena. In order to couple agent-based and continuum models, however, there is a need to ensure that each model faithfully represents the best data available at the relevant scale and that there is consistency between models under basel...
Abstract—Leukocyte trafficking through the microcircula-tion and into tissues is central in angiogen...
International audienceVascular clamping often causes injury to arterial tissue, leading to a cascade...
Researchers have been continuously applying a wide variety of approaches to understand vascular adap...
The widespread incidence of cardiovascular diseases and associated mortality and morbidity, along wi...
The widespread incidence of cardiovascular diseases and associated mortality and morbidity, along wi...
The widespread incidence of cardiovascular diseases and associated mortality and morbidity, along wi...
The widespread incidence of cardiovascular diseases and associated mortality and morbidity, along wi...
The widespread incidence of cardiovascular diseases and associated mortality and morbidity, along wi...
The widespread incidence of cardiovascular diseases and associated mortality and morbidity, along wi...
The widespread incidence of cardiovascular diseases and associated mortality and morbidity, along wi...
Blood vessels are dynamic structures whose properties are continuously adapted by resident vascular ...
Arterial wall dynamics arise from the synergy of passive mechano-elastic properties of the vascular ...
AbstractThe failure rate for vascular interventions (vein bypass grafting, arterial angioplasty/sten...
International audienceVascular clamping often causes injury to arterial tissue, leading to a cascade...
International audienceVascular clamping often causes injury to arterial tissue, leading to a cascade...
Abstract—Leukocyte trafficking through the microcircula-tion and into tissues is central in angiogen...
International audienceVascular clamping often causes injury to arterial tissue, leading to a cascade...
Researchers have been continuously applying a wide variety of approaches to understand vascular adap...
The widespread incidence of cardiovascular diseases and associated mortality and morbidity, along wi...
The widespread incidence of cardiovascular diseases and associated mortality and morbidity, along wi...
The widespread incidence of cardiovascular diseases and associated mortality and morbidity, along wi...
The widespread incidence of cardiovascular diseases and associated mortality and morbidity, along wi...
The widespread incidence of cardiovascular diseases and associated mortality and morbidity, along wi...
The widespread incidence of cardiovascular diseases and associated mortality and morbidity, along wi...
The widespread incidence of cardiovascular diseases and associated mortality and morbidity, along wi...
Blood vessels are dynamic structures whose properties are continuously adapted by resident vascular ...
Arterial wall dynamics arise from the synergy of passive mechano-elastic properties of the vascular ...
AbstractThe failure rate for vascular interventions (vein bypass grafting, arterial angioplasty/sten...
International audienceVascular clamping often causes injury to arterial tissue, leading to a cascade...
International audienceVascular clamping often causes injury to arterial tissue, leading to a cascade...
Abstract—Leukocyte trafficking through the microcircula-tion and into tissues is central in angiogen...
International audienceVascular clamping often causes injury to arterial tissue, leading to a cascade...
Researchers have been continuously applying a wide variety of approaches to understand vascular adap...