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首页> 外文期刊>IEEE journal of selected topics in quantum electronics >Analysis of cavitation dynamics during pulsed laser tissue ablation by optical on-line monitoring
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Analysis of cavitation dynamics during pulsed laser tissue ablation by optical on-line monitoring

机译:光学在线监测分析脉冲激光组织消融过程中的空化动力学

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Flashlamp pumped mid-IR laser systems emitting in the 2-3-/spl mu/m wavelength range are widely used for various medical applications, especially for tissue ablation. Explosive evaporation is inevitably associated with this process due to the short pulse durations of these laser systems and the high absorption of tissue and water in this spectral regime. Tissue displacement and dissection occur in liquid environment as a consequence of the induced cavitation. Depending on the application these processes might enhance the tissue ablation but can also cause adverse tissue effects. The ablation dynamics were investigated by evaluating the change in reflected probe-light intensity re-emitted from the application fiber tip. The ablated cavity and the signal was correlated to fast-flash photographs of the event. Based on this reflection signal a water/tissue discrimination system is introduced which can widely support medical laser applications. In laser sclerostomy ab externo, for example, this approach can be used as a feedback system to automatically control the ablation process. With such a system, adverse effects to adjacent tissue in the anterior chamber of the eye can be minimized.
机译:在2-3- / spl mu / m波长范围内发射的闪光灯泵浦中红外激光系统被广泛用于各种医疗应用,尤其是组织消融。由于这些激光系统的脉冲持续时间短,并且在此光谱范围内组织和水的高吸收性,爆炸蒸发不可避免地与此过程相关。由于发生空化,在液体环境中发生组织移位和解剖。根据应用的不同,这些过程可能会增强组织消融,但也会引起不利的组织影响。通过评估从应用光纤尖端重新发出的反射探针光强度的变化来研究消融动力学。消融的腔和信号与事件的快速闪光照片相关。基于该反射信号,引入了可以广泛支持医疗激光应用的水/组织鉴别系统。例如,在外部激光巩膜切开术中,该方法可用作反馈系统以自动控制消融过程。利用这样的系统,可以使对眼睛的前房中的相邻组织的不利影响最小化。

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