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The thermoelastic basis of short pulsed laser ablation of biological tissue.

机译:短脉冲激光切除生物组织的热弹性基础。

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摘要

Strong evidence that short-pulse laser ablation of biological tissues is a photomechanical process is presented. A full three-dimensional, time-dependent solution to the thermoelastic wave equation is compared to the results of experiments using an interferometric surface monitor to measure thermoelastic expansion. Agreement is excellent for calibrations performed on glass and on acrylic at low laser fluences. For cortical bone, the measurements agree well with the theoretical predictions once optical scattering is included. The theory predicts the presence of the tensile stresses necessary to rupture the tissue during photomechanical ablation. The technique is also used to monitor the ablation event both before and after material is ejected.
机译:强有力的证据表明,短脉冲激光烧蚀生物组织是一种光机械过程。使用干涉式表面监测仪测量热弹性膨胀,将热弹性波动方程的完整的,与时间有关的三维解与实验结果进行比较。该协议非常适合在低激光通量下在玻璃和丙烯酸上进行的校准。对于皮质骨,一旦包括光学散射,测量结果与理论预测就非常吻合。该理论预测在光机械消融期间破裂组织所需的拉伸应力的存在。该技术还用于在材料弹出之前和之后监视消融事件。

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