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首页> 外文期刊>Lasers in Medical Science >Comparing an optical parametric oscillator (OPO) as a viable alternative for mid-infrared tissue ablation with a free electron laser (FEL)
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Comparing an optical parametric oscillator (OPO) as a viable alternative for mid-infrared tissue ablation with a free electron laser (FEL)

机译:比较光参量振荡器(OPO)和自由电子激光(FEL)作为中红外组织消融的可行替代方案

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Beneficial medical laser ablation removes material efficiently with minimal collateral damage. A Mark-III free electron laser (FEL), at a wavelength of 6.45 μm has demonstrated minimal damage and high ablation yield in ocular and neural tissues. While this wavelength has shown promise for surgical applications, further advances are limited by the high overhead for FEL use. Alternative mid-infrared sources are needed for further development. We compared the FEL with a 5-μs pulse duration with a Q-switched ZGP-OPO with a 100-ns pulse duration at mid-infrared wavelengths. There were no differences in the ablation threshold of water and mouse dermis with these two sources in spite of the difference in their pulse structures. There was a significant difference in crater depth between the ZGP:OPO and the FEL. At 6.1 μm, the OPO craters are eight times the depth of the FEL craters. The OPO craters at 6.45 and 6.73 μm were six and five times the depth of the FEL craters, respectively. Bright-field (pump-probe) images showed the classic ablation mechanism from formation of a plume through collapse and recoil. The crater formation, ejection, and collapse phases occurred on a faster time-scale with the OPO than with the FEL. This research showed that a ZGP-OPO laser could be a viable alternative to FEL for clinical applications.
机译:有益的医疗激光消融可有效去除材料,并减少附带损害。波长为6.45μm的Mark-III自由电子激光(FEL)在眼和神经组织中显示出最小的损伤和高的烧蚀率。尽管该波长已显示出可用于外科手术的前景,但进一步的发展受到FEL使用费用高昂的限制。需要替代的中红外光源以进行进一步开发。我们在中红外波长下比较了具有5μs脉冲持续时间的FEL和具有100ns脉冲持续时间的Q开关ZGP-OPO。尽管这两种来源的水和小鼠真皮的消融阈值没有差异,尽管它们的脉搏结构不同。 ZGP:OPO和FEL之间的火山口深度存在显着差异。 OPO坑的深度为6.1μm,是FEL坑的深度的八倍。 OPO坑的深度为6.45和6.73μm,分别是FEL坑深度的六倍和五倍。明场(泵浦探针)图像显示了从羽状物形成到坍塌和后坐力的经典消融机制。与OEL相比,OPO的弹坑形成,弹射和坍塌阶段的发生时间更快。这项研究表明,对于临床应用而言,ZGP-OPO激光器可以替代FEL。

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