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Experimenta validation of compliance zone at the cerebral arterial bifurcation : comparison study with reproducible phantom and computational fluid dynamics simulation

Other Titles
 뇌동맥 분지부 컴플라이언스 영역의 실험 규명 : 팬텀 및 전산유체역학 시뮬레이션의 비교연구 
Authors
 이영준 
Issue Date
2013
Description
Dept. of Medicine/박사
Abstract
A zone compliant to pulsatile flow (compliance zone) showing evagination-and-flattening at the apex of the cerebral arterial bifurcation was documented in our previous report using electrocardiogram-gated CT and MR angiography. We aimed to validate the existence of compliance zones and examine their relationship to local thin-elastic walls. We examined different bifurcating vascular models; a phantom with a thin-elastic region at the apex, and computational fluid dynamics (CFD) models with either an elastic or rigid region at the apex of a bifurcation.In the phantom, the elastic region at the apex of the bifurcation showed evagination-and-flattening in time with the pulsatile circulating fluids. The size of the evaginations increased when the outlet side was tilted down below the level of the flow-generating pump. Pulsatile evagination could be simulated in the CFD model with an elastic region at the bifurcation apex, and the pressure gradient was highest in the evaginating apex in peak systolic phase. We were able to demonstrate a compliance zone, which responds to pressure gradients, experimentally, in the form of a thin-elastic region at an arterial bifurcation.
Files in This Item:
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Appears in Collections:
1. College of Medicine (의과대학) > Others (기타) > 3. Dissertation
URI
https://ir.ymlib.yonsei.ac.kr/handle/22282913/136451
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