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首页> 外文期刊>Applied optics >MYOCARDIAL TEMPERATURE DISTRIBUTION UNDER CW ND-YAG LASER IRRADIATION IN IN VITRO AND IN VIVO SITUATIONS - THEORY AND EXPERIMENT
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MYOCARDIAL TEMPERATURE DISTRIBUTION UNDER CW ND-YAG LASER IRRADIATION IN IN VITRO AND IN VIVO SITUATIONS - THEORY AND EXPERIMENT

机译:CW ND-YAG激光辐照下体内和体外的心肌温度分布-理论与实验

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摘要

Tissue samples ranging from 2 to 16 mm in thickness were irradiated at 1064 nm with energies ranging from 40 to 2400 J. Coagulation lesions of in vitro and in vivo experiments were subjected to temperature profiling and submitted for histology. Irreversible damage was calculated with the damage integral formalism, following the bioheat equation solved with Monte Carlo computer light-distribution simulations. Numerical temperature rise and coagulation depth compared well with the in vitro results. The in vivo data required a change in the optical properties based on integrating sphere measurements for high irradiance to make the experimental and numerical data converge. The computer model has successfully solved several light-tissue interaction situations in which scattering dominates over absorption. [References: 26]
机译:在1064 nm处以40至2400 J的能量辐照厚度2至16 mm的组织样品。对体外和体内实验的凝血损伤进行温度分析,并进行组织学检查。按照蒙特卡罗计算机光分布模拟求解的生物热方程,使用损伤积分形式来计算不可逆损伤。数值温升和凝结深度与体外结果比较好。体内数据需要基于对高辐照度的积分球测量值来改变光学特性,以使实验和数值数据收敛。该计算机模型已成功解决了几种光组织相互作用的情况,在这些情况下,散射占主导地位超过吸收。 [参考:26]

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