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Modeling of ultrashort pulsed laser irradiation in the cornea based on parabolic and hyperbolic heat equations using electrical analogy

机译:基于抛物线和双曲线热方程的电模拟模拟角膜中的超短脉冲激光辐照

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摘要

Hyperbolic and parabolic heat equations are formulated to study a nonperfused homogeneous transparent cornea irradiated by high power and ultrashort pulsed laser in the Laser Thermo Keratoplasty (LTK) surgery. Energy absorption inside the cornea is modeled using the Beer– Lambert law that is incorporated as an exponentially decaying heat source. The hyperbolic and parabolic bioheat models of the tissue were solved by exploiting the mathematical analogy between thermal and electrical systems, by using robust circuit simulation program called Hspice to get the solutions of simultaneous RLC and RC transmission line networks. This method can be used to rapidly calculate the temperature in laser-irradiated tissue at time and space domain. It is found that internal energy gained from the irradiated field results in a rapid rise of temperature in the cornea surface during the early heating period, while the hyperbolic wave model predicts a higher temperature rise than the classical heat diffusion model. In addition, this paper investigates and examines the effect of some critical parameters such as relaxation time, convection coefficient, radiation, tear evaporation and variable thermal conductivity of cornea. Accordingly, it is found that a better accordance between hyperbolic and parabolic models will be achieved by time.
机译:制定了双曲线和抛物线热方程,以研究激光热角膜成形术(LTK)手术中由高功率和超短脉冲激光照射的非灌注均匀透明角膜。角膜内部的能量吸收是根据比尔-兰伯特定律建模的,该定律被作为指数衰减的热源纳入其中。利用热和电系统之间的数学类比,通过使用称为Hspice的鲁棒电路仿真程序来获得RLC和RC传输线网络同步的解决方案,从而解决了组织的双曲线和抛物线生物热模型。该方法可用于快速计算时空域激光照射组织中的温度。发现从辐照场获得的内部能量在加热的早期导致角膜表面温度的快速升高,而双曲波模型预测的温度升高要高于经典的热扩散模型。此外,本文还研究并研究了一些关键参数的影响,例如松弛时间,对流系数,辐射,泪液蒸发和角膜可变的导热系数。因此,发现在时间上将实现双曲模型和抛物线模型之间的更好的一致性。

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