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首页> 外文期刊>Journal of Thermal Biology >A comparative study of thermal effects of 3 types of laser in eye: 3D simulation with bioheat equation
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A comparative study of thermal effects of 3 types of laser in eye: 3D simulation with bioheat equation

机译:三种激光在眼中的热效应的比较研究:利用生物热方程的3D模拟

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摘要

The application of laser in ophthalmology and eye surgery is so widespread that hardly can anyone deny its importance. On the other hand, since the human eye is an organ susceptible to external factors such as heat waves, laser radiation rapidly increases the temperature of the eye and therefore the study of temperature distribution inside the eye under laser irradiation is crucial; but the use of experimental and invasive methods for measuring the temperature inside the eye is typically high-risk and hazardous. In this paper, using the three-dimensional finite element method, the distribution of heat transfer inside the eye under transient condition was studied through three different lasers named Nd:Yag, Nd:Yap and ArF. Considering the metabolic heat and blood perfusion rate in various regions of the eye, numerical solution of space-time dependant Pennes bioheat transfer equation has been applied in this study. Lambert-Beer's law has been used to model the absorption of laser energy inside the eye tissues. It should also be mentioned that the effect of the ambient temperature, tear evaporation rate, laser power and the pupil diameter on the temperature distribution have been studied. Also, temperature distribution inside the eye after applying each laser and temperature variations of six optional regions as functions of time have been investigated. The results show that these radiations cause temperature rise in various regions, which will in turn causes serious damages to the eye tissues. Investigating the temperature distribution inside the eye under the laser irradiation can be a useful tool to study and predict the thermal effects of laser radiation on the human eye and evaluate the risk involved in performing laser surgery. (C) 2015 Elsevier Ltd. All rights reserved.
机译:激光在眼科和眼科手术中的应用是如此广泛,以至于几乎没有人否认其重要性。另一方面,由于人眼是易受诸如热波之类的外部因素影响的器官,因此激光辐射会迅速升高眼睛的温度,因此研究在激光照射下眼睛内部的温度分布至关重要。但是使用实验性和侵入性方法测量眼睛内部温度通常是高风险和危险的。本文使用三维有限元方法,通过瞬态条件下的三种内部Nd:Yag,Nd:Yap和ArF激光器研究了眼内热传递的分布。考虑到眼睛各个部位的代谢热和血液灌注率,本研究采用时空相关的Pennes生物热传递方程的数值解。兰伯特-比尔定律已被用来模拟眼组织内部激光能量的吸收。还应该提到的是,已经研究了环境温度,泪液蒸发速率,激光功率和瞳孔直径对温度分布的影响。此外,还研究了在使用每种激光后眼睛内部的温度分布以及六个可选区域随时间变化的温度变化。结果表明,这些辐射导致各个区域的温度升高,进而对眼睛组织造成严重损害。调查激光照射下眼睛内部的温度分布可能是研究和预测激光辐射对人眼的热效应以及评估进行激光手术的风险的有用工具。 (C)2015 Elsevier Ltd.保留所有权利。

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