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A computational investigation of the geometric factors affecting the severity of renal arterial stenoses

机译:影响肾动脉狭窄程度的几何因素的计算研究

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An arterial stenosis, or a constriction of an artery, can lead to higher pressure losses than those seen in a healthy artery which, in turn, can disrupt normal functioning of the body. Depending on the type, size, and location of a stenosis, the decision to intervene might be made. Because many arterial stenoses can be characterized by improved medical imaging, insights into the effects of stenosis geometry on pressure loss could provide important information for medical decision making. Computational fluid dynamics (CFD) provides a means of relatively quick investigation of various stenotic artery geometries. In this work, CFD simulations varying axial location of a stenosis, stenosis eccentricity, stenosis percent occlusion, and shape were performed. The simulated arteries were models of pathologic human renal arteries. The results indicate that pressure loss across a stenosis has no dependence on stenosis eccentricity. Pressure loss was shown not to be affected significantly by the axial location of the stenosis, but it was affected strongly by the stenosis structure. The most significant dependence was on percent stenosis; simulations indicated a critical percent stenosis of approximately 75-80%, above which pressure loss increases drastically. The critical percent stenosis identified here is consistent with guidelines used by physicians.
机译:与健康的动脉相比,动脉狭窄或动脉狭窄可导致更高的压力损失,进而会破坏身体的正常功能。根据狭窄的类型,大小和位置,可以做出干预的决定。由于许多动脉狭窄可通过改进的医学成像来表征,因此深入了解狭窄几何形状对压力损失的影响可为医学决策提供重要信息。计算流体动力学(CFD)提供了一种相对快速地研究各种狭窄动脉几何形状的方法。在这项工作中,进行了CFD模拟,以改变狭窄的轴向位置,狭窄的偏心率,狭窄的百分比阻塞和形状。模拟的动脉是病理性人肾动脉的模型。结果表明,狭窄处的压力损失与狭窄的离心率无关。压力损失显示不受狭窄的轴向位置的显着影响,但受狭窄结构的影响很大。最显着的依赖性是狭窄百分比。模拟表明狭窄的临界百分比约为75-80%,超过此百分比,压力损失将急剧增加。此处确定的临界狭窄百分比与医师使用的指南一致。

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