首页> 外文期刊>工程与科学中的计算机建模(英文) >Fluid-Structure Interaction Simulation of Aqueous Outflow System in Response to Juxtacanalicular Meshwork Permeability Changes with a Two-Way Coupled Method
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Fluid-Structure Interaction Simulation of Aqueous Outflow System in Response to Juxtacanalicular Meshwork Permeability Changes with a Two-Way Coupled Method

机译:响应于双向耦合方法的含水流出系统水性流出系统的流体结构相互作用模拟

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摘要

Elevated intraocular pressure appears to have a broader impact on increased resistance to aqueous humor outflow through the conventional aqueous outflow system(AOS).However,there is still no consensus about exact location of the increased outflow resistance of aqueous humor,and the mechanism is not perfect.In addition,it is difficult to accurately obtain hydrodynamic parameters of aqueous humor within the trabecular meshwork outflow pathways based on the current technology.In this paper,a two-way fluid-structure interaction simulation was performed to study the pressure difference and velocity in the superficial trabecular meshwork,juxtacanalicular meshwork(JCM)and Schlemm’s canal in response to JCM permeability changes.We obtained the JCM permeability of normal intraocular pressure varied between 1×10?15 m2 and 10×10?15 m2 while permeability of the JCM ranged from 2×10?16 m2 and 3×10?16 m2 under conditions of high intraocular pressure.The study indicated that the fluid dynamics parameters in trabecular meshwork and Schlemm’s canal are most significantly affected by the changes of JCM permeability.Moreover,the study demonstrates that the finite element modeling of AOS provides a practical means for studying the outflow dynamics and the biomechanical environment of the AOS.
机译:升高的眼压似乎对通过常规含水流出系统(AOS)的耐水液流出的抗性更宽的影响。然而,仍然没有关于水性幽默的增加的流出阻力的确切位置的共识,并且该机制不是完美。此外,难以基于当前技术准确地获得水指道流出路径内的水性幽默的流体动力学参数。在本文中,进行双向流体结构相互作用模拟,以研究压力差和速度在浅表的小梁网状,响应JCM渗透性的浅草尖网格(JCM)和Schlemm的管道中,我们获得的正常眼压的JCM渗透率在1×10?15m 2和10×10?15平方米之间变化,而JCM的渗透性在高眼压的条件下,从2×10?16平方米和3×10?16平方米。研究表明,流体动力学段落TERS中的TEABECHORY MESHOWER和SCHLEMM运河最大程度地受到JCM渗透性的变化的显着影响。该研究表明AOS的有限元建模提供了研究流出动力学和AOS的生物力学环境的实用手段。

著录项

  • 来源
    《工程与科学中的计算机建模(英文)》 |2018年第008期|P.301-314|共14页
  • 作者单位

    School of Biomedical Engineering Capital Medical University Beijing 100069 China.;

    Beijing Key Laboratory of Fundamental Research on Biomechanics in Clinical Application Capital Medical University Beijing 100069 China.;

    College of Medical Imaging Xuzhou Medical University Xuzhou 221004 China.;

    School of Biomedical Engineering Capital Medical University Beijing 100069 China.;

    Beijing Key Laboratory of Fundamental Research on Biomechanics in Clinical Application Capital Medical University Beijing 100069 China.;

    School of Biomedical Engineering Capital Medical University Beijing 100069 China.;

    Beijing Key Laboratory of Fundamental Research on Biomechanics in Clinical Application Capital Medical University Beijing 100069 China.;

    School of Biomedical Engineering Capital Medical University Beijing 100069 China.;

    Beijing Key Laboratory of Fundamental Research on Biomechanics in Clinical Application Capital Medical University Beijing 100069 China.;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类 物理化学(理论化学)、化学物理学;
  • 关键词

    Juxtacanalicular meshwork; fluid-structure interaction; permeability; trabecular meshwork;

    机译:JuxtAcanalicular木包装;流体结构相互作用;渗透性;小梁网状;
  • 入库时间 2022-08-19 04:55:09
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