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ANALYSIS OF HEAT AFFECTED ZONE DURING SHORT PULSE LASER IRRADIATION OF TUMORS

机译:短脉冲激光照射肿瘤过程中的热影响区分析

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摘要

The objective of this study is to analyze the heat-affected zone in tissue phantoms containing inhomogeneities and skin tumors in live anaesthetized rats when irradiated with a focused beam from a short pulse laser source. Tumors are simulated with the inhomogeneities embedded inside the tissue phantoms with different combinations of optical and thermo-physical properties with respect to the base tissue matrix. Experiments are also performed on anaesthetized rats with tumorogenic agent injected below and on the skin. The experiments performed demonstrate that short-pulsed laser heating results in a higher peak temperature rise with a lower heat affected zone compared to a continuous wave source. Hyperbolic non-Fourier heat conduction formulation is used to study axial and radial temperature distributions in tissue medium. Experimentally measured temperature profiles match extremely well with the prediction from the non-Fourier model than the Fourier formulation, particularly for time less than the relaxation time of tissues.
机译:这项研究的目的是分析当用短脉冲激光源聚焦的光束照射时,在活着的麻醉大鼠中包含不均匀性和皮肤肿瘤的组织模型中的热影响区。用嵌入在体模内部的不均匀性模拟肿瘤,相对于基础组织基质,这些不均匀性具有光学和热物理特性的不同组合。还对麻醉的大鼠进行了实验,在其下方和皮肤上注射了致瘤剂。进行的实验表明,与连续波源相比,短脉冲激光加热导致峰值温度升高更高,而热影响区更低。双曲线非傅立叶导热公式用于研究组织介质中的轴向和径向温度分布。与傅立叶公式相比,实验测量的温度曲线与非傅立叶模型的预测非常吻合,特别是在比组织松弛时间短的时间内。

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