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Finite Element Simulation of Pulsed Laser-induced Thermotherapy for Biological Liver Tissue

机译:生物肝组织脉冲激光诱导热处理的有限元模拟

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Laser-induced thermotherapy (LITT) predicts the effects of laser applications in LITT and optimizes the efficacy of irradiation plans, the light distribution in liver tissue, the optical tissue properties, and the changes caused by thermal denaturation. In this paper, COMSOL Multiphysics, a commercially available Finite Element (FE) simulation software package, was used to simulate the interaction between laser and liver tissue. A short-pulse laser point source, coagulated liver tissue and uniform soft tissue submerged in water were established. In this study, two sets of simulation models were used to describe the principles: 1) Diffusion equation was used to simulate light propagation; 2) Temperature changes were simulated using biothermal equations. The experimental results show that there are significant differences in penetration depth and light energy distribution of native and coagulated liver tissues under laser irradiation with different wavelengths. The penetration depth of the liver tissue after heat coagulation is significantly reduced. In addition, the simulation can present the temperature curve during the clinical hyperthermia of liver cancer and determine the effect by various treatment parameters. These results provide a better understanding of laser-tissue interactions and may be helpful to researchers in the fields of laser medical.
机译:激光诱导的热疗法(LITT)预测LITT中的激光应用的影响,并优化辐照计划的功效,肝组织中的光分布,光学组织特性以及热变性引起的变化。在本文中,COMSOL Multiphysics是一种商用的有限元(FE)仿真软件包,用于模拟激光和肝组织之间的相互作用。建立了短脉冲激光点源,凝固的肝组织和浸没在水中的均匀软组织。在本研究中,使用两组仿真模型来描述原理:1)扩散方程用于模拟光传播; 2)使用生物液相传模拟温度变化。实验结果表明,具有不同波长的激光照射下天然和凝血肝组织的渗透深度和光能分布存在显着差异。热凝固后肝组织的渗透深度显着降低。此外,模拟可以在肝癌的临床热疗期间呈现温度曲线,并通过各种治疗参数确定效果。这些结果提供了更好地理解激光组织相互作用,并且对激光医疗领域的研究人员可能有所帮助。

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