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A Combined Mathematical-Physical Model of Laser-Induced Thermotherapy (LITT)

机译:激光诱导热疗(LITT)的综合数学-物理模型

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Laser-induced thermo therapy (LITT) is an alternative, gentle therapy of cancer. In this work a new computational model (3D space and time) of LITT is presented. Using an arbitrary small number (< 20) of optical fibers, multiple low energy laser light sources are applied internal to an arbitrary shaped tumor in the human liver. The power and position of each source can be chosen arbitrary. Each source is a spherical point source emitting light isotropically. The model consists of two, semi-coupled partial differential equations (PDEs) describing the light distribution and the heat absorption in the target tissue. Since water is a dominant tissue component in both the healthy liver and the malignant tumor the wavelength of the laser is chosen in the NIR area (1,064 nm). This is expected to form an absorption contrast in favor of the tumor leading to high temperature and damage of the tumor cells. The new, fast computational model presented here opens for the possibility of evaluating the outcome of LITT by inspection of temperature fields, and comparing these to measured histological damage due to heating. This combination is promising when evaluating the result of LITT prior to the actual treatment.
机译:激光诱导热疗法(LITT)是另一种温和的癌症治疗方法。在这项工作中,提出了LITT的新计算模型(3D空间和时间)。使用任意少量(<20)的光纤,将多个低能激光光源应用于人肝中任意形状的肿瘤内部。每个电源的功率和位置可以任意选择。每个光源都是各向同性发光的球形点光源。该模型由两个半耦合的偏微分方程(PDE)组成,这些方程描述了目标组织中的光分布和热吸收。由于水是健康肝脏和恶性肿瘤中的主要组织成分,因此在NIR区域(1,064 nm)中选择激光的波长。预期这将形成有利于肿瘤的吸收对比,导致高温和肿瘤细胞的损害。此处介绍的新的快速计算模型为通过检查温度场评估LITT的结果并将其与加热引起的组织学损伤进行比较提供了可能性。在实际治疗之前评估LITT的结果时,这种组合很有希望。

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