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首页> 外文期刊>Progress in computational fluid dynamics >How arterial pressures affect the consideration of internal carotid artery angle as a risk factor for carotid artherosclerotic disease
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How arterial pressures affect the consideration of internal carotid artery angle as a risk factor for carotid artherosclerotic disease

机译:动脉压如何影响将颈内动脉角度作为颈动脉硬化性疾病的危险因素的考虑

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摘要

Patient-specific geometric factors together with traditional risk factors may aid the early identification of patients at high risk of developing carotid artery disease requiring surgical intervention. Recent studies have linked aspects of carotid geometry to the pathogenesis of internal carotid artery (ICA) stenosis. Abnormal wall shear stress (WSS) is found for large ICA angles. Low WSS is believed to correspond to plaque formation whereas high WSS may result in plaque rupture and clotting. Here, the meshless method, smoothed particle hydrodynamics, is used to simulate Newtonian flow through a clinical, rigid walled, carotid bifurcation. The resulting flow field and WSS are reported for a range of different ICA angles. Varying the angle without changing boundary pressure conditions produces minimal change in flow and WSS. Greater ICA downstream pressures appear important for maintaining well-behaved flow through the bifurcation by suppressing flow separation downstream of the stenosis resulting in more uniform wall stress.
机译:特定于患者的几何因素以及传统的危险因素可能有助于及早发现需要手术干预的发展为颈动脉疾病的高风险患者。最近的研究已将颈动脉几何形态与颈内动脉(ICA)狭窄的发病机制联系起来。对于较大的ICA角,发现了异常的壁切应力(WSS)。低WSS被认为对应于斑块形成,而高WSS可导致斑块破裂和凝结。在此,使用无网格方法(平滑粒子流体动力学)来模拟通过临床刚性壁颈动脉分叉的牛顿流。报告了一系列不同ICA角的流场和WSS。在不改变边界压力条件的情况下改变角度可使流量和WSS的变化最小。较大的ICA下游压力对于抑制狭窄下游的流动分离会导致更均匀的壁应力,对于保持通过分支的良好流动显得很重要。

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