Why the study?
Aortic dissection carries high risk of death and complications, prompting assessment of a biomechanical model to predict risks in non-dilated thoracic aorta with Stanford type A dissection.
Population
Biomechanical model of a non-dilated thoracic aorta with Stanford type A dissection
Design
Fully coupled fluid-structure interaction simulation study
Authors
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May highlight rupture-prone sites in dissection models; leaves open clinical translation pending human validation.
A fluid-structure interaction model reveals that wall shear stress and flow characteristics can predict areas prone to dilation, thrombus formation, and rupture in Stanford type A aortic dissection.
Wang et al. (2023) studied this question.
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