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A novel patient‐oriented numerical procedure for glaucoma drainage devices

机译:青光眼引流装置的以患者为中心的新型数值程序

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摘要

The present work analyses the performance of four glaucoma drainage devices, by means of a novel patient-oriented numerical procedure. The procedure is based on the three-dimensional geometry reconstruction from the stacks of tomographic images of a human eye, at different angles, on meshing and on thermo-fluid dynamics modelling activities, carried out on the reconstructed computational domain. The current three-dimensional eye model considers anterior chamber (AC), trabecular meshwork, Schlemm's canal, and collector channels, making use of generalised porous medium approach for modelling ocular porous tissue and cavities. The intraocular pressure (IOP) management inside AC of human eye is analysed, by comparing the results obtained for four drainage devices implanted in a human eye for glaucoma treatment, ie, ExPRESS shunt, iStent inject, SOLX gold micro shunt, and the novel silicon shunt device. The numerical results allow predicting the effects of the installation of these implants on human eyes, in terms of IOP decrease, aqueous humour velocity, pressure, friction coefficient, and local Nusselt number, pointing out the clear distinction between pre-operative and post-operative eye conditions for different glaucoma surgical techniques.
机译:本工作通过一种新颖的面向患者的数值程序分析了四种青光眼引流装置的性能。该程序基于从不同角度的人眼断层图像堆栈进行的三维几何重建,并在重建的计算域上进行了网格划分和热流体动力学建模活动。当前的三维眼模型考虑了前房(AC),小梁网,Schlemm的管和收集器通道,并利用广义的多孔介质方法对眼部多孔组织和腔体进行建模。通过比较植入人眼中用于青光眼治疗的四种引流装置(即EXPRESS分流器,iStent注射液,SOLX金微型分流器和新型硅)获得的结果,分析了人眼AC内的眼内压(IOP)管理分流器。数值结果可以预测这些植入物对人眼的影响,包括眼压降低,房水速度,压力,摩擦系数和局部Nusselt数,指出了手术前后的明显区别。不同青光眼手术技术的眼部状况。

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