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Influence of the hole geometry on the flow distribution in ventricular catheters for hydrocephalus

机译:孔的几何形状对脑积水脑室导管内血流分布的影响

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摘要

Background Hydrocephalus is a medical condition consisting of an abnormal accumulation of cerebrospinal fluid within the brain. A catheter is inserted in one of the brain ventricles and then connected to an external valve to drain the excess of cerebrospinal fluid. The main drawback of this technique is that, over time, the ventricular catheter ends up getting blocked by the cells and macromolecules present in the cerebrospinal fluid. A crucial factor influencing this obstruction is a non-uniform flow pattern through the catheter, since it facilitates adhesion of suspended particles to the walls. In this paper we focus on the effects that tilted holes as well as conical holes have on the flow distribution and shear stress.
机译:背景脑积水是一种由脑内脑脊液异常积聚组成的医学疾病。导管插入脑室之一,然后连接到外部瓣膜以排出多余的脑脊髓液。该技术的主要缺点是,随着时间的流逝,心室导管最终会被脑脊液中存在的细胞和大分子阻塞。影响这种阻塞的关键因素是通过导管的不均匀流动模式,因为它有助于将悬浮颗粒粘附到壁上。在本文中,我们着眼于倾斜孔和圆锥孔对流动分布和剪切应力的影响。

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