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首页> 外文期刊>Selected Topics in Quantum Electronics, IEEE Journal of >Pulse-Duration-Dependent Mid-Infrared Laser Ablation for Biological Applications
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Pulse-Duration-Dependent Mid-Infrared Laser Ablation for Biological Applications

机译:用于生物应用的脉冲持续时间相关的中红外激光烧蚀

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摘要

There are significant benefits to medical laser surgeries performed with mid-infrared wavelengths, including the ability to select laser parameters in order to minimize photochemical and thermal collateral damage. It has been shown that a wavelength of 6.1 μm is optimal when high ablation efficiency and minimal collateral damage is desired in biological soft tissues. Historically, free electron lasers were the only option for ablating tissue at this wavelength due to their ample pulse energy and average power. In recent years, new sources are being developed for this wavelength that can successfully ablate tissue. These alternative sources have different pulse structures and pulse durations than free electron lasers, motivating investigation of how these parameters affect the ablation process. Here, we present the pulse duration dependence for mid-IR laser ablation of biological tissues at a wavelength of 6.1 μm on a tissue phantom of cooked egg white. The crater shape, depth, and volume all changed in a significant, nonmonotonic manner as the laser pulse duration was increased from 100 ns to 5 μs.
机译:使用中红外波长执行的医学激光手术具有显着优势,包括选择激光参数以最大程度地减少光化学和热附带损害的能力。已经显示,当在生物软组织中需要高消融效率和最小的附带损害时,最佳波长为6.1μm。从历史上看,由于自由电子激光具有足够的脉冲能量和平均功率,因此是在该波长消融组织的唯一选择。近年来,针对该波长的可以成功消融组织的新光源正在开发中。这些替代光源与自由电子激光器相比具有不同的脉冲结构和脉冲持续时间,从而激发了对这些参数如何影响消融过程的研究。在这里,我们介绍了煮熟的蛋清体模上波长为6.1μm的生物组织的中红外激光消融的脉冲持续时间依赖性。随着激光脉冲持续时间从100 ns增加到5μs,陨石坑的形状,深度和体积都以明显的非单调方式变化。

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