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A New Murine Model of Endovascular Aortic Aneurysm Repair
Published on: July 7, 2013
Morphology and Hemodynamics in Isolated Common Iliac Artery Aneurysms Impacts Proximal Aortic Remodeling
Louis P Parker1,2, Janet T Powell3, Lachlan J Kelsey1,2
1From the Vascular Engineering Laboratory, Harry Perkins Institute of Medical Research, QEII Medical Centre, Nedlands and Centre for Medical Research (L.P.P., L.J.K., B.L., P.E.N., B.J.D.), The University of Western Australia, Perth.
Insights
Low wall shear stress predicts common iliac artery aneurysm (CIAA) growth and rupture. Abnormal blood flow within CIAAs may drive aortic remodeling, causing the aorta to deflect towards the aneurysm.
Area of Science:
- Vascular Surgery
- Biomedical Engineering
- Cardiovascular Research
Background:
- Isolated common iliac artery aneurysms (CIAA) are rare, with unclear effects on blood flow and aortic remodeling.
- The natural history and hemodynamic influences on CIAA progression remain poorly understood.
Purpose of the Study:
- To investigate how aortoiliac morphology and hemodynamics influence CIAA natural history and proximal aortic remodeling.
- To test the hypothesis that specific geometric and flow characteristics predict CIAA development and rupture.
Main Methods:
- Computational fluid dynamics (CFD) analysis of 25 isolated CIAAs (15 intact, 10 ruptured).
- In silico modeling of 24 hypothetical aortoiliac geometries with varied angles and deflections.
- Validation using a cohort of 162 patients with CIAA.
Main Results:
- Lower wall shear stress (WSS) in CIAAs correlated with larger aneurysm diameter and was inversely associated with WSS.
- Rupture was linked to regions of low and oscillatory shear stress, particularly with wide aortic bifurcation angles.
- Abdominal aortic deflection towards the CIAA was observed in most unilateral cases, confirmed in the validation cohort.
Conclusions:
- Decreased WSS is a strong predictor of CIAA progression, including rupture.
- Abnormal intra-aneurysmal flow appears to induce proximal aortic remodeling, characterized by lateral aortic deflection towards the CIAA.
Abstract:
Objective- Isolated common iliac artery aneurysms (CIAA) are rare. Their prognosis and influence on aortoiliac blood flow and remodeling are unclear. We evaluated the hypotheses that morphology at and distal to the aortic bifurcation, together with the associated hemodynamic changes, influence both the natural history of CIAA and proximal aortic remodeling. Approach and Results- Twenty-five isolated CIAAs (15 intact, 10 ruptured), in 23 patients were reconstructed and analyzed with computational fluid dynamics: all showed abnormal flow. Then we studied a series of 24 hypothetical aortoiliac geometries in silico with varying abdominal aortic deflection and aortic bifurcation angles: key findings were assessed in an independent validation cohort of 162 patients. Wall shear stress in isolated unilateral CIAAs was lower than the contralateral common iliac artery, 0.38±0.33 Pa versus 0.61±0.24 Pa, inversely associated with CIAA diameter ( P<0.001) and morphology (high shear stress in variants distal to a sharp kink). Rupture usually occurred in regions of elevated low and oscillatory shear with a wide aortic bifurcation angle. Abdominal aortas deflected towards the CIAA for most unilateral isolated CIAAs (14/21). In silico, wider bifurcation angles created high focal regions of low and oscillatory shear in the common iliac artery. The associations of unilateral CIAA with aortic deflection and common iliac artery diameter with bifurcation angle were confirmed in the validation cohort. Conclusions- Decreasing wall shear stress is strongly associated with CIAA progression (larger aneurysms and rupture), whereas abnormal blood flow in the CIAA seems to promote proximal aortic remodeling, with adaptive lateral deflection of the abdominal aorta towards the aneurysmal side.
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