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Bio-heat transfer analysis during short pulse laser irradiation of tissues

机译:短脉冲激光照射组织过程中的生物传热分析

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The objective of this paper is to analyze the temperature distributions and heat affected zone in skin tissue medium when irradiated with either a collimated or a focused laser beam from a short pulse laser source. Experiments are performed on multi-layer tissue phantoms simulating skin tissue with embedded inhomogeneities simulating subsurface tumors and as well as on freshly excised mouse skin tissue samples. Two types of lasers have been used in this study - namely a Q-switched pulsed 1064 nm Nd:YAG short pulse laser having a pulse width of 200 ns and a 1552 nm diode short pulsed laser having a pulse width of 1.3 ps. Experimental measurements of axial and radial temperature distribution in the tissue medium are compared with the numerical modeling results. For numerical modeling, the transient radiative transport equation is first solved using a discrete ordinates method for obtaining the intensity distribution and radiative heat flux inside the tissue medium. Then the temperature distribution is obtained by coupling the bio-heat transfer equation with either hyperbolic non-Fourier or parabolic Fourier heat conduction model. The hyperbolic heat conduction equation is solved using MacCormack's scheme with error terms correction. It is observed that experimentally measured temperature distribution is in good agreement with that predicted by hyperbolic heat conduction model. The experimental measurements demonstrate that converging laser beam focused directly at the subsurface location can produce desired high temperature at that location compared to that produced by collimated laser beam for the same laser parameters. Finally the ablated tissue removal is characterized using his-tological studies as a function of laser parameters.
机译:本文的目的是分析当来自短脉冲激光源的准直或聚焦激光束照射时,皮肤组织介质中的温度分布和热影响区。在模拟具有嵌入式不均匀性的模拟皮肤组织的多层组织模型和模拟地下肿瘤的实验中,以及对新鲜切除的小鼠皮肤组织样本进行实验。在这项研究中使用了两种类型的激光器-脉冲宽度为200 ns的Q开关脉冲1064 nm Nd:YAG短脉冲激光器和脉冲宽度为1.3 ps的1552 nm二极管短脉冲激光器。将组织介质中轴向和径向温度分布的实验测量结果与数值模拟结果进行了比较。对于数值建模,首先使用离散坐标法求解瞬态辐射传输方程,以获取组织介质内部的强度分布和辐射热通量。然后,通过将生物传热方程与双曲型非傅立叶或抛物型傅立叶热传导模型耦合,获得温度分布。使用具有误差项校正的MacCormack方案求解双曲热传导方程。观察到,实验测量的温度分布与双曲线导热模型预测的温度分布非常吻合。实验测量表明,与相同激光参数的准直激光束产生的激光束相比,直接聚焦在地下位置的会聚激光束可以在该位置产生所需的高温。最终,使用组织学研究对消融的组织去除进行表征,该去除是激光参数的函数。

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