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Simple analytical model for laser-induced tissue ablation

机译:激光诱导的组织消融的简单分析模型

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Abstract: Simple laws of physics have been applied to understand behavior of common parameters of laser induced tissue ablation. Threshold fluence for ablation is related to some of the optical and thermal properties of the tissue. For this a necessary condition of ablation is imposed that the rate of deposition of laser energy should be greater than the rate of expending energy for vaporization and at threshold they should be equal. A simple expression for resulting depth of the ablation crater is derived assuming total conversion of the optical energy above threshold into kinetic energy of the ablation products. Evaporation that should follow the ablation in the superheated exponential tail in the tissue is also considered for contributing to the crater depth. The assumption of total conversion of optical energy above threshold into kinetic energy of the ablation products is also used to find the average velocity of the ablation products ejected from the tissue. The laser induced ablation is shown to produce a pressure wave which has two components. The first component originates because of the static pressure arising due to the conversion of condensed state of the tissue into a super heated fluid which remained confined to its original volume because of its kinetics and inertia. This component has been worked out using the ideal gas laws. The second component is the recoil pressure of the ejected ablation products which at any instant of time is governed by the instantaneous intensity of the laser beam and it is calculated using Rocket effect. The values of the aforesaid parameters calculated from this model are compared with our and others experimental results and are found to be in agreement with reasonable accuracy.!
机译:摘要:简单的物理定律已被用于理解激光诱导组织消融的通用参数的行为。消融的阈值通量与组织的某些光学和热学性质有关。为此,施加了必要的烧蚀条件,即激光能量的沉积速率应大于汽化消耗的能量速率,并且在阈值时它们应相等。假设阈值以上的光能完全转换为消融产物的动能,则得出消融坑深度的简单表达式。还应考虑组织中过热指数尾部切除后的蒸发,这有助于形成火山口深度。高于阈值的光能到消融产物的动能的总转化的假设也被用来找到从组织中喷射出的消融产物的平均速度。示出了激光诱导的消融产生具有两个分量的压力波。第一成分的产生是由于由于组织的凝结状态转换成过热流体而产生的静压,该过热流体由于其动力学和惯性而被限制在其原始体积内。该成分已使用理想气体定律求出。第二个成分是喷射的消融产品的后坐力,该后坐力在任何时间都由激光束的瞬时强度控制,并使用Rocket效应进行计算。从该模型计算出的上述参数值与我们和其他实验结果进行了比较,发现具有合理的准确性。

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