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首页> 外文期刊>Lasers in surgery and medicine >Hollow-waveguide-based nanosecond, near-infrared pulsed laser ablation of tissue.
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Hollow-waveguide-based nanosecond, near-infrared pulsed laser ablation of tissue.

机译:Hollow-waveguide-based纳秒,近红外脉冲激光烧蚀的组织。

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BACKGROUND AND OBJECTIVE: Short-pulse solid-state lasers have recently received much attention as new coherent light sources for medical applications, but steady transmission of their high-energy output pulses through a solid quartz fiber is difficult because of the onset of laser-induced breakdown. We previously demonstrated that hollow waveguides could be used to deliver nanosecond laser pulses for tissue ablation. The aim of this study was to determine the optimum laser pulse energy and range of defocused distance for obtaining a deep and sharp ablation channel in myocardial tissue with laser pulses transmitted through a hollow waveguide. STUDY DESIGN/MATERIALS AND METHODS: Cyclic-olefin-polymer-coated silver hollow waveguides of 1 mm in inner diameter and 1 m in length were used. A vacuum-cored scheme was applied to the waveguides to suppress laser-induced air breakdown. Porcine myocardial tissue was irradiated with 300 laser pulses that were delivered through the waveguide in vitro at various laser energy levels and defocused distances, and depths and diameters of channels were measured. Histological analysis of the ablated tissues was also performed. RESULTS: At an ablation energy of approximately 60 mJ/pulse, deep (>4.5 mm) and sharp (depth-to-diameter ratio of > 6) channels were created in tissue in the range of defocused distances of -4 approximately + 0.5 mm. Under these conditions, waveguide bending did not cause a remarkable change in ablation characteristics. Histological analysis of ablated tissue showed limited thermal damage but suggested a certain extent of mechanical effects in the tissue. CONCLUSION: With near-infrared, nanosecond laser pulses delivered through a cyclic-olefin-polymer-coated silver hollow waveguide, efficient and sharp ablation of myocardial tissue can be achieved, suggesting the usefulness of the hollow waveguide as a new flexible delivery system for high-intensity laser pulses.
机译:背景和目的:短脉冲固态激光最近得到太多的关注新的医疗相干光源应用程序,但是稳定传输的通过固体石英高能脉冲输出纤维是困难的,因为开始的激光分解。证明可以使用空心波导为组织提供纳秒激光脉冲消融。的最佳激光脉冲能量和范围散焦距离获取深和夏普与激光烧蚀通道在心肌组织通过一个空心波导脉冲传播。研究设计/材料和方法:Cyclic-olefin-polymer-coated银空心波导的1毫米内径和1米长度。应用于波导压制激光空气击穿。组织与300激光脉冲辐照在波导中传输体外不同的激光能量水平和散焦距离、深度和直径的通道被测量。切除组织也执行。一个消融的能量大约60 mJ /脉冲,深(> 4.5毫米)和夏普(depth-to-diameter比率> 6)渠道的组织中创建范围内的散焦距离大约4+ 0.5毫米。弯曲不引起显著的变化烧蚀特性。切除组织显示有限的热损伤但建议一定程度的机械在组织的影响。近红外,纳秒激光脉冲通过cyclic-olefin-polymer-coated银空心波导、高效和急剧消融心肌组织可以实现,表明波导作为一个新的有用的空洞高强度激光灵活的交付系统脉冲。

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