Intracranial aneurysms (ICAs) are focal dilations of cerebral arteries caused by the weakening of the arterial wall. The resulting changed hemodynamics can further lead to stress and growth of the site until it eventually ruptures. The morbidity and mortality of a ruptured aneurysm are high, even after treatment, with many dying within months of the occurrence or suffering from lifelong disability [1]. Previous studies have separately examined the hemodynamics, mechanical properties, or morphology of human aneurysm tissues. The present work provides quantitative data on a resected human cerebral aneurysm's mechanical, collagen fiber microstructural, and morphological characteristics. The mechanical properties of the tissue were characterize...
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...
Intracranial aneurysms (ICAs) are focal dilatations that imply a weakening of the brain artery. Inci...
Intracranial aneurysms (ICAs) are focal dilatations that imply a weakening of the brain artery. Inci...
Intracranial aneurysms (IAs) are pathological enlargements of the walls of cerebral arteries. Ruptur...
Intracranial aneurysms (IAs) are pathological enlargements of the walls of cerebral arteries. Ruptur...
A cerebral aneurysm (CA) is most commonly a saccular enlargement in the wall of a cerebral artery. A...
A cerebral aneurysm is an enlargement of the cerebral artery wall commonly seen in the adult populat...
Objective: Aneurysm wall biomechanics are not yet an integral part of aneurysm rupture risk evaluati...
Objective: Aneurysm wall biomechanics are not yet an integral part of aneurysm rupture risk evaluati...
Background: The pathophysiology of cerebral aneurysm is complex and poorly understood, and it can ha...
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...
Intracranial aneurysms (ICAs) are focal dilatations that imply a weakening of the brain artery. Inci...
Intracranial aneurysms (ICAs) are focal dilatations that imply a weakening of the brain artery. Inci...
Intracranial aneurysms (IAs) are pathological enlargements of the walls of cerebral arteries. Ruptur...
Intracranial aneurysms (IAs) are pathological enlargements of the walls of cerebral arteries. Ruptur...
A cerebral aneurysm (CA) is most commonly a saccular enlargement in the wall of a cerebral artery. A...
A cerebral aneurysm is an enlargement of the cerebral artery wall commonly seen in the adult populat...
Objective: Aneurysm wall biomechanics are not yet an integral part of aneurysm rupture risk evaluati...
Objective: Aneurysm wall biomechanics are not yet an integral part of aneurysm rupture risk evaluati...
Background: The pathophysiology of cerebral aneurysm is complex and poorly understood, and it can ha...
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...