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IOP measurement using air-puff tonometry: Dynamic modeling of human eyeball with experimental results

机译:使用气眼眼压法测量眼压:用实验结果对人眼球进行动态建模

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IOP (Intra-Ocular Pressure) is an important factor in eye examination specifically for the diagnosis of glaucoma. The measurement of IOP has been experimentally studied for decades but the mechanism has not been fully understood yet because of the complex structure of the human eyeball. Therefore, the simulation with reasonably simple model is necessary to complement the experimental study. This paper proposes dynamic models of the human eyeball to simulate the displacement of the cornea during IOP measurement by air-puff tonometry. The parameters of proposed models are based on the experimental results presented by Kaneko et al. The deformation of the cornea is calculated by the linear system theory with parameter study. The simulation results revealed that both the stiffness and viscous damping of the eyeball affect the IOP measurement by air-puff tonometry. This finding is important, because the IOP measurement by air-puff tonometry is always compared against the IOP measured by the Goldmann applanation tonometry (GAT). However, the viscous damping does not affect the IOP measured by GAT due to low loading rate. Furthermore, the simulation results showed that the effect of the mass of the eyeball is negligible. In addition, the simulation results showed that different shapes of displacement between young and senior subjects could be explained by the decreased stiffness between the eyeball and the eye socket due to aging. Furthermore, the results verify that the difference does not affect the IOP measurement by air-puff tonometry. By comparing the simulation results and the experimental results, the effectiveness of the simulation and improvement of modeling were discussed.
机译:眼内压(IOP)是专门用于青光眼诊断的眼科检查的重要因素。对IOP的测量已进行了数十年的实验研究,但由于人眼球的复杂结构,其机理尚未完全明了。因此,用合理简单的模型进行仿真是对实验研究的补充。本文提出了一种动态眼球动力学模型,以模拟气眼眼压测量眼压过程中角膜的位移。所提出模型的参数基于Kaneko等人的实验结果。角膜的变形是通过带有参数研究的线性系统理论来计算的。仿真结果表明,眼球的刚度和粘性阻尼均会影响气眼眼压计的眼压测量。这一发现很重要,因为始终将通过气孔眼压法测量的IOP与通过Goldmann压平眼压法(GAT)测量的IOP进行比较。但是,由于低加载速率,粘性阻尼不会影响通过GAT测得的IOP。此外,仿真结果表明,眼球质量的影响可忽略不计。此外,模拟结果表明,由于年龄的增长,眼球和眼窝之间的刚度降低可以解释年轻人和老人之间不同的位移形状。此外,结果证实,该差异不影响通过气雾眼压计的眼压测量。通过比较仿真结果和实验结果,讨论了仿真的有效性和建模的改进。

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