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首页> 外文期刊>Biomedical Engineering Letters >Mechanical Eye Model for Evaluating Intraocular Pressure Measurements
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Mechanical Eye Model for Evaluating Intraocular Pressure Measurements

机译:机械眼模型评估眼压测量

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PurposeFor the development of new intraocular pressure (IOP) measurement devices, as well as for comparison with existing devices it is important to consider the various biomechanical properties of the eye in test setups. Therefore, a controllable physical phantom with flexibility in the adjustment of biomechanical parameters and geometries is being proposed and analyzed. Methods Different configurations of a mechanical eye model are simulated together with the applanation process, based on the finite element method (FEM). Forming tools are designed to produce artificial corneas with variable thicknesses and stiffness’s using injection molding. An apparatus is assembled for controlling and evaluating the phantom eye in connection with a piezoelectric IOP test sensor. Measurements are also performed using the commercially available non-contact tonometer NCT-800. ResultsSimulation results for surface pressure and stress distribution at the cornea together with the pressure in the central part of the applanation body show that the pressure reaches a maximum when the local stress is centrally concentrated and decreases to a stable level afterwards. More rigid corneas result in higher maximum values for the pressure. The measurements with the piezoelectric IOP test sensor are in good agreement with the simulation results. The NCT-800 measurements show a significant influence of the biomechanical properties of the cornea on measured IOPs. ConclusionOur phantom is suitable for describing the effect of biomechanical characteristics of the human eye on tonometric measurements and will facilitate the evaluation of new tonometry systems.
机译:目的对于开发新的眼内压(IOP)测量设备以及与现有设备进行比较,在测试设置中考虑眼睛的各种生物力学特性非常重要。因此,提出并分析了在生物力学参数和几何形状的调节中具有灵活性的可控的物理模型。方法基于有限元方法(FEM),模拟了机械眼模型的不同配置以及压平过程。成型工具旨在通过注射成型生产出厚度和刚度可变的人造角膜。组装了用于与压电IOP测试传感器相结合地控制和评估幻影眼的设备。还使用市售的非接触眼压计NCT-800进行测量。结果对角膜的表面压力和应力分布以及压平体中央部分的压力的模拟结果表明,当局部应力集中在中心时,压力达到最大,然后降低到稳定水平。较硬的角膜导致较高的压力最大值。压电IOP测试传感器的测量与仿真结果非常吻合。 NCT-800的测量结果表明,角膜的生物力学特性对所测得的IOP有重大影响。结论我们的体模适合描述人眼的生物力学特性对眼压测量的影响,并将有助于评估新的眼压测量系统。

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