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3D Dynamic Sensing of Human Eye Toward Evaluation of Cornea Stiffness

机译:人眼的3D动态感测可评估角膜的刚度

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摘要

In early diagnosis of glaucoma, intraocular pressure measurement is one of an important method. Non-contact method has measured eye pressure through the deformation of cornea during the increase of the force due to air puff. The deformation is influenced by the cornea stiffness as well as the eye internal pressure. Since the cornea stiffness is unknown in general, it is difficult to evaluate the true eye pressure. The dynamic behavior of cornea under air puff may provide us with a good hint for evaluating the cornea stiffness appropriately. For this purpose, we develop the sensing system composed of a high speed camera, a mirror for producing a virtual camera, a non-contact tonometer and a slit light source. This system enables us to measure the cornea deformation under concave shape. We show the experimental data for human eyes as well as an artificial eye made by transparent material.
机译:在青光眼的早期诊断中,眼压的测量是一种重要的方法。非接触式方法通过在由于吹气而增加力的过程中通过角膜的变形来测量眼压。变形受角膜刚度以及眼睛内部压力的影响。由于通常不知道角膜的刚度,因此很难评估真实的眼压。吹气时角膜的动态行为可能为我们正确评估角膜刚度提供了很好的提示。为此,我们开发了由高速相机,用于生产虚拟相机的镜子,非接触式眼压计和狭缝光源组成的传感系统。该系统使我们能够测量凹形下的角膜变形。我们展示了人眼以及由透明材料制成的人造眼的实验数据。

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