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首页> 外文期刊>KSME International Journal >Analysis of design parameters for shunt valve and anti-siphon device used to treat patients with hydrocephalus
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Analysis of design parameters for shunt valve and anti-siphon device used to treat patients with hydrocephalus

机译:脑积水患者用分流阀和防虹吸装置设计参数分析

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摘要

The present study investigated design parameters of shunt valves and anti-siphon device used to treat patients with hydrocephalus. The shunt valve controls drainage of cerebrospinal fluid (CSF) through passive deflection of a thin and small diaphragm. The anti-siphon device (ASD) is optionally connected to the valve to prevent overdrainage when the patients are in the standing position. The major design parameters influencing pressure-flow characteristics of the shunt valve were analyzed using ANSYS structural program. Experiments were performed on the commercially available valves and showed good agreements with the computer simulation. The results of the study indicated that predeflection of the shunt valve diaphragm is an important design parameter to determine the opening pressure of the valve. The predeflection was found to depend on the diaphragm tip height and could be adjusted by the diaphragm thicknesss and its elastic modulus. The major design parameters of the ASD were found to be the clearance (gap height) between the thin diaphragm and the flow orifice. Besides the gap height, the opening pressure of the ASD could be adjusted by the diaphragm thickness, its elastic modulus, area ratio of the diaphragm to the flow orifice. Based on the numerical simulation which considered the increased subcutaneous pressure introduced by the tissue capsule pressure on the implanted shunt valve system, optimum design parameters were proposed for the ASD.
机译:本研究调查了用于治疗脑积水的分流阀和防虹吸装置的设计参数。分流阀通过薄而小的隔膜的被动偏转控制脑脊液(CSF)的排出。防虹吸装置(ASD)可选地连接到阀门,以防止患者站立时引流。利用ANSYS结构程序分析了影响分流阀压力-流量特性的主要设计参数。在市售阀门上进行了实验,结果表明与计算机仿真具有良好的一致性。研究结果表明,分流阀膜片的预挠度是确定阀开启压力的重要设计参数。发现预挠度取决于隔膜尖端的高度,可以通过隔膜厚度及其弹性模量进行调整。发现ASD的主要设计参数是薄隔膜和流量孔之间的间隙(间隙高度)。除间隙高度外,ASD的开启压力还可以通过隔膜厚度,其弹性模量,隔膜与流量孔的面积比来调节。基于数值模拟,考虑到组织囊压力在植入的分流阀系统上引起的皮下压力增加,为ASD提出了最佳设计参数。

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