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Modeling of thermal injury produced by laser ablation of biological tissue

机译:激光烧蚀生物组织产生的热损伤的建模

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摘要

Abstract: A thermal model to predict the effects of laser parameters on the zone of thermal injury produced by laser ablation of biological tissue is presented. A dimensionless parameter based on the ablation velocity and the optical and thermal properties of the target is key in determining the resulting zone of thermal injury. The zone of thermal injury is minimized when this parameter, known as the Peclet number (Pe), is much larger than one. This occurs because the rapid movement of the ablation front prevents the diffusion of energy beyond the laser that absorbs the laser radiation. For Pe less than one, the slow movement of the ablation front allows for diffusion of energy away from the region of energy deposition and leads to larger zones of thermal injury. The model predictions are compared with data available in the literature. Deviations between the model predictions and published data are discussed and potential effects of pyrolysis, temporally varying pulse shapes and pulse repetition rates are explored.!29
机译:摘要:提出了一种预测激光参数对生物组织激光烧蚀产生的热损伤区域影响的热模型。基于消融速度以及靶材的光学和热学性质的无量纲参数是确定最终热损伤区的关键。当此参数(称为Peclet数(Pe))远大于1时,会将热伤害区域最小化。发生这种情况是因为消融前端的快速移动阻止了能量扩散到吸收激光辐射的激光之外。对于小于1的Pe,消融锋面的缓慢移动允许能量从能量沉积区域扩散出去,并导致更大的热损伤区域。将模型预测与文献中可用的数据进行比较。讨论了模型预测与已发布数据之间的差异,并探讨了热解,随时间变化的脉冲形状和脉冲重复频率的潜在影响!29

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