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A relation between near-wall particle-hemodynamics and onset of thrombus formation in abdominal aortic aneurysms
C Basciano1, C Kleinstreuer, S Hyun
1Physics-Based Computing Group, Southeast Division, Applied Research Associates, Raleigh, NC 27615, USA.
Abstract:
A novel computational particle-hemodynamics analysis of key criteria for the onset of an intraluminal thrombus (ILT) in a patient-specific abdominal aortic aneurysm (AAA) is presented. The focus is on enhanced platelet and white blood cell residence times as well as their elevated surface-shear loads in near-wall regions of the AAA sac. The generalized results support the hypothesis that a patient's AAA geometry and associated particle-hemodynamics have the potential to entrap activated blood particles, which will play a role in the onset of ILT. Although the ILT history of only a single patient was considered, the modeling and simulation methodology provided allow for the development of an efficient computational tool to predict the onset of ILT formation in complex patient-specific cases.
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