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Time-resolved measurements of sodium emission in the plume generated by laser ablation of myocardium tissue

机译:激光消融心肌组织产生的羽流中发射的时间分辨测量

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Optical spectroscopy stands as a powerful tool to gather information on the physical phenomena involved in the laser ablation process. This work reports on the time-resolved measurement of the ablation plume generated by a Q-switched Nd:YAG laser. Chicken heart tissue was used as sample. A helium-neon laser, aligned perpendicularly to the Nd:YAG laser beam and parallel to the ablated surface, was used as a probe beam. The probe light is collected by an optical fiber and sent to a spectrophotometer for analysis. A CCD detector was connected to the spectrometer. The technique reveals the differences in the plume behavior. Our results show that the plume is formed with some delay time with respect to the high energy laser pulse. The data show the constitution of the plume for different moments in time allowing the identification of the sodium emission lines in the chicken myocardium. For times lower than 40 μs just light components are ejected from the tissue while the heavier components of the plume takes much more time to be ejected and later to dissipate from the path of the probe beam.
机译:光学光谱是一种强大的工具,可以收集关于激光消融过程中涉及的物理现象的信息。这项工作报告了Q开关Nd:YAG激光器产生的消融羽流的时间分辨率测量。用作样品的鸡心脏组织。垂直于Nd:YAG激光束和平行于消融表面的氦氖激光器用作探针光束。通过光纤收集探针光并送到分光光度计进行分析。 CCD检测器连接到光谱仪。该技术揭示了羽流行为的差异。我们的结果表明,相对于高能激光脉冲,羽流形成有一些延迟时间。数据显示了不同时刻的羽流的结构,允许鉴定鸡肉心肌中的钠排放线。对于低于40μs的时间,只需将光部件从组织中喷射,而羽流的较重组分需要更多的时间来喷射,并且后面将从探针光束的路径消散。

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