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THERMAL ABLATION OF MOUSE SKIN TISSUE USING ULTRA-SHORT PULSE 1552 nm LASER

机译:超短脉冲1552 nm激光对小鼠皮肤组织的热消融

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Analysis of biological tissue ablation by an ultra-short pulse laser and the corresponding mathematical modeling of ablation are of fundamental importance to the understanding of laser-tissue interaction for advancing surgical application of lasers. The objective of this paper is to analyze the thermal ablated damage zones during irradiation of freshly excised mouse skin tissue samples by a novel approach of using a focused laser beam from an ultra-short pulse laser source. Experiments are performed using Raydiance Desktop Laser having a wavelength of 1552 nm and a pulse width of 1.3 ps. Mouse tissue samples are translated in a direction perpendicular to the laser beam using three-axis automated motion-controlled stages. Scanning of the tissue sample ensures a fresh region of the tissue is irradiated each time. The surface temperature distribution is measured using a thermal imaging camera. It is observed that use of focused beam results in minimal radial heat spread to the surrounding tissue regions. The ablation phenomenon is analytically modeled by the use of two-phase transient heat conduction model. After completion of tissue irradiation experiments, histological studies are performed using frozen sectioning technique to observe morphological changes in tissue samples in response to laser irradiation. The ablation depth measurements obtained using histological studies are compared with the modeling results. A parametric study of various laser parameters such as time-average power, pulse repetition rate, and pulse energy, and as well as irradiation time and scanning velocity is performed to determine the necessary ablation threshold. Analytical modeling results are in very good agreement with experimentally measured ablation depth. The goal of this research is to develop a tool for selection of appropriate laser parameters for precise clean tissue ablation.
机译:通过超短脉冲激光进行生物组织消融的分析以及相应的消融数学模型对于理解激光与组织之间的相互作用对于促进激光的外科手术应用具有至关重要的意义。本文的目的是通过一种使用来自超短脉冲激光源的聚焦激光束的新颖方法来分析新鲜切除的小鼠皮肤组织样品的辐照过程中的热消融损伤区域。使用波长为1552 nm的脉冲宽度为1.3 ps的Raydiance台式激光器进行实验。使用三轴自动运动控制平台在垂直于激光束的方向上平移鼠标组织样本。组织样本的扫描可确保每次都对组织的新鲜区域进行照射。使用热成像相机测量表面温度分布。观察到,使用聚焦束导致最小的径向热散布到周围组织区域。消融现象是通过使用两相瞬态热传导模型来分析建模的。组织辐照实验完成后,使用冷冻切片技术进行组织学研究,以观察响应激光辐照的组织样品的形态变化。使用组织学研究获得的消融深度测量值与建模结果进行了比较。对各种激光参数(例如时间平均功率,脉冲重复频率和脉冲能量以及辐照时间和扫描速度)进行参数研究,以确定必要的消融阈值。分析建模结果与实验测量的烧蚀深度非常吻合。这项研究的目的是开发一种工具,用于选择合适的激光参数以进行精确的清洁组织消融。

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