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Thermal modelling of the human eye exposed to infrared radiation of 1064 nm Nd:YAG and 2090 nm Ho:YAG lasers

机译:人眼热建模暴露于红外辐射1064 nm nd:YAG和2090 nm Ho:YAG激光器

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In the last few decades laser eye surgery has been implemented in various ophthalmic procedures. The most important issue with laser eye surgery is the estimation of temperature rise in eye tissues due to the absorption of high intensity laser radiation. The 2D model of the human eye, using the Finite Elements Method, is developed in order to study the temperature distribution in human eyes subjected to radiation by two infrared lasers, the 1064 nm Nd:YAG and the 2090 nm Ho:YAG laser. The mathematical model is based on the space-time dependent Pennes' bio-heat transfer equation supplemented with natural boundary condition equations for the cornea and the sclera. The results could prove to be useful in predicting the damage to intraocular tissues due to heating by infrared laser radiation.
机译:在过去的几十年中,激光眼科手术已在各种眼科手术中实施。激光眼镜手术最重要的问题是由于高强度激光辐射的吸收而估计眼组织的温度升高。使用有限元方法的人眼的2D模型是开发的,以研究通过两个红外激光器对辐射进行辐射的人眼中的温度分布,1064nm Nd:YAG和2090nm HO:YAG激光器。数学模型基于节省时间依赖性的Pennes的生物传热方程,其补充了角膜和巩膜的自然边界条件方程。由于通过红外激光辐射加热,结果可以证明是有助于预测眼内组织的损伤。

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