International audienceVascular clamping often causes injury to arterial tissue, leading to a cascade of cellular and extracellular events. A reliable in silico prediction of these processes following vascular injury could help us to increase our understanding thereof, and eventually optimize surgical techniques or drug delivery to minimize the amount of long-term damage. However, the complexity and interdependency of these events make translation into constitutive laws and their numerical implementation particularly challenging. We introduce a finite element simulation of arterial clamping taking into account acute endothelial denudation, damage to extracellular matrix, and smooth muscle cell loss. The model captures how this causes tissue ...
Blood vessels grow and remodel in response to mechanical stimuli. Many computational models capture ...
During the lifetime of all living multicellular organisms, wounds in their tissues are frequently ob...
During the lifetime of all living multicellular organisms, wounds in their tissues are frequently ob...
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...
Robotic surgery is an attractive, minimally invasive and high precision alternative to conventional ...
Robotic surgery is an attractive, minimally invasive and high precision alternative to conventional ...
Tissue overload during medical procedures can lead to severe complications. This chapter presents an...
Blood vessels are dynamic structures whose properties are continuously adapted by resident vascular ...
Like all living tissue, arterial tissue grows and remodels under the impulse of altered mechanical l...
Agent-based models (ABMs) represent a novel approach to study and simulate complex mechano-chemo-bio...
Arterial growth and remodelling (GandR) is mediated by vascular cells in response to their chemical ...
Commonly used techniques in cardiovascular interventions such as arterial clamping always entail a c...
Arterial growth and remodelling (GandR) is mediated by vascular cells in response to their chemical ...
Wounds in multicellular tissue occur regularly through the lifetime of living organisms, and the clo...
Blood vessels grow and remodel in response to mechanical stimuli. Many computational models capture ...
During the lifetime of all living multicellular organisms, wounds in their tissues are frequently ob...
During the lifetime of all living multicellular organisms, wounds in their tissues are frequently ob...
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...
Robotic surgery is an attractive, minimally invasive and high precision alternative to conventional ...
Robotic surgery is an attractive, minimally invasive and high precision alternative to conventional ...
Tissue overload during medical procedures can lead to severe complications. This chapter presents an...
Blood vessels are dynamic structures whose properties are continuously adapted by resident vascular ...
Like all living tissue, arterial tissue grows and remodels under the impulse of altered mechanical l...
Agent-based models (ABMs) represent a novel approach to study and simulate complex mechano-chemo-bio...
Arterial growth and remodelling (GandR) is mediated by vascular cells in response to their chemical ...
Commonly used techniques in cardiovascular interventions such as arterial clamping always entail a c...
Arterial growth and remodelling (GandR) is mediated by vascular cells in response to their chemical ...
Wounds in multicellular tissue occur regularly through the lifetime of living organisms, and the clo...
Blood vessels grow and remodel in response to mechanical stimuli. Many computational models capture ...
During the lifetime of all living multicellular organisms, wounds in their tissues are frequently ob...
During the lifetime of all living multicellular organisms, wounds in their tissues are frequently ob...