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Evaluation of laser radiation regimes at thermal tissue destruction

机译:热组织破坏时激光辐射制度评估

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The existing methods of laser destruction of biotissues, widely spread in surgery and coagulation action, are based on local heat emission in the tissues after light absorption. Here we present the results of the simulation of tissues heat destruction, taking into account the influence of blood and lymph circulation on the processes of heat transfer. The problem is adapted to the case of liver tissue with tumor. A liver is considered as a capillary-porous body with internal blood circulation. Heatconductivity and tissue-blood heat transfer are considered. Heat action is assumed to be implemented with contact laser scalpel. The mathematical model consists of two inhomogeneous nonlinear equations of heatconductivity with spherical symmetry. Nonstationary temperature fields of tissue and blood are determined and the main parameters are: (1) coefficients of heatconductivity and capacitance of blood and tissue, (2) blood and tissue density, (3) total metabolic energy, (4) volume coefficient accounting for heat-exchange between tissue and blood, and (5) blood circulation velocity. The power of laser radiation was taken into account in boundary conditions set for the center of coagulated tissue volume. We also took into account the process connected with changing of substance phase (vaporization). The original computer programs allow one to solve the problem varying in a wide range of the main parameters. Reasonable agreement was found between the calculation results and the experimental data for operations on microsamples and on test animals. It was demonstrated, in particular, that liver tissue coagulation regime is achieved at 10 W laser power during 25 s. The coagulation radius of 0.7 cm with the given tumor radius of 0.5 cm corresponds to the real clinical situation in case of metastasis liver affection.
机译:现有的激光破坏方法的生物发布,广泛蔓延和凝血作用,基于光吸收后组织中的局部散热。在这里,我们介绍了组织热破坏的模拟结果,考虑到血液和淋巴循环对热传递过程的影响。问题适于患有肿瘤的肝组织的情况。肝脏被认为是具有内部血液循环的毛细管多孔体。考虑了热导流和组织血热传递。假设热动作用接触激光手术刀实现。数学模型由具有球形对称的两个热导率的两个不均匀的非线性方程组成。确定组织和血液的非间平温度场,主要参数是:(1)热导率和血液和组织电容系数,(2)血液和组织密度,(3)总代谢能量,(4)体积系数核算(4)组织和血液之间的热交换,以及(5)血液循环速度。在为凝固组织体积中心设定的边界条件下考虑激光辐射的功率。我们还考虑到与改变物质相(汽化)相关的过程。原始计算机程序允许一个解决在各种主要参数范围内变化的问题。在计算结果和微粒材和试验动物上的操作之间发现了合理的协议。特别地,肝脏组织凝固制度在25秒期间以10W激光功率实现。凝血半径为0.7厘米,给定的肿瘤半径为0.5cm,对应于转移肝脏感情的真实临床情况。

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