Background and purpose: Individual rupture risk assessment of intracranial aneurysms is a major issue in the clinical management of asymptomatic aneurysms. Aneurysm rupture occurs when wall tension exceeds the strength limit of the wall tissue. At present, aneurysmal wall mechanics are poorly understood and thus, risk assessment involving mechanical properties is inexistent. Aneurysm computational hemodynamics studies make the assumption of rigid walls, an arguable simplification. We therefore aim to assess mechanical properties of ruptured and unruptured intracranial aneurysms in order to provide the foundation for future patient-specific aneurysmal risk assessment. This work also challenges some of the currently held hypotheses in computa...
International audienceObjectiveAneurysm wall biomechanics are not yet an integral part of aneurysm r...
International audienceObjectiveAneurysm wall biomechanics are not yet an integral part of aneurysm r...
International audienceObjectiveAneurysm wall biomechanics are not yet an integral part of aneurysm r...
Background and purpose: Individual rupture risk assessment of intracranial aneurysms is a major issu...
International audienceBackground and Purpose-- Individual rupture risk assessment of intracranial an...
International audienceBackground and Purpose-- Individual rupture risk assessment of intracranial an...
International audienceBackground and Purpose-- Individual rupture risk assessment of intracranial an...
International audienceBackground and Purpose-- Individual rupture risk assessment of intracranial an...
Objective: Aneurysm wall biomechanics are not yet an integral part of aneurysm rupture risk evaluati...
International audienceObjectiveAneurysm wall biomechanics are not yet an integral part of aneurysm r...
International audienceObjectiveAneurysm wall biomechanics are not yet an integral part of aneurysm r...
Objective: Aneurysm wall biomechanics are not yet an integral part of aneurysm rupture risk evaluati...
International audienceObjectiveAneurysm wall biomechanics are not yet an integral part of aneurysm r...
International audienceObjectiveAneurysm wall biomechanics are not yet an integral part of aneurysm r...
International audienceObjectiveAneurysm wall biomechanics are not yet an integral part of aneurysm r...
International audienceObjectiveAneurysm wall biomechanics are not yet an integral part of aneurysm r...
International audienceObjectiveAneurysm wall biomechanics are not yet an integral part of aneurysm r...
International audienceObjectiveAneurysm wall biomechanics are not yet an integral part of aneurysm r...
Background and purpose: Individual rupture risk assessment of intracranial aneurysms is a major issu...
International audienceBackground and Purpose-- Individual rupture risk assessment of intracranial an...
International audienceBackground and Purpose-- Individual rupture risk assessment of intracranial an...
International audienceBackground and Purpose-- Individual rupture risk assessment of intracranial an...
International audienceBackground and Purpose-- Individual rupture risk assessment of intracranial an...
Objective: Aneurysm wall biomechanics are not yet an integral part of aneurysm rupture risk evaluati...
International audienceObjectiveAneurysm wall biomechanics are not yet an integral part of aneurysm r...
International audienceObjectiveAneurysm wall biomechanics are not yet an integral part of aneurysm r...
Objective: Aneurysm wall biomechanics are not yet an integral part of aneurysm rupture risk evaluati...
International audienceObjectiveAneurysm wall biomechanics are not yet an integral part of aneurysm r...
International audienceObjectiveAneurysm wall biomechanics are not yet an integral part of aneurysm r...
International audienceObjectiveAneurysm wall biomechanics are not yet an integral part of aneurysm r...
International audienceObjectiveAneurysm wall biomechanics are not yet an integral part of aneurysm r...
International audienceObjectiveAneurysm wall biomechanics are not yet an integral part of aneurysm r...
International audienceObjectiveAneurysm wall biomechanics are not yet an integral part of aneurysm r...