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Subnanosecond probing of the ablation of soft plaque from arterial wall by 308 nm pulses delivered through a fiber

机译:亚纳秒级探测通过纤维传输的308 nm脉冲从动脉壁消融软斑

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摘要

Ablation and etching in air by pulsed, ultraviolet (308-nm) laser radiation of the surface of a sample of soft plaque attached to the arterial wall were probed by pulses of visible laser radiation (596 nm; >1 ns FWHM). The ultraviolet radiation was delivered to the sample by an optical fiber 600 mu m in diameter. The results of the probing were recorded photographically. Ablation and etching in air of the intimal wall by laser pulses at the same wavelength were also probed in the same manner for comparison. When the fiber tip was 0.5 mm above the sample surface, the ablation that was caused by the laser pulse was readily seen as a blast wave of expanding gases that was followed by the ejection of solid particulates.
机译:用可见的激光辐射(596 nm;> 1 ns FWHM)脉冲探测通过附着在动脉壁上的软斑样品表面的脉冲紫外(308 nm)激光在空气中的消融和蚀刻。紫外线是通过直径为600μm的光纤传递到样品的。探测结果通过照相方式记录。还以相同的方式探测了通过相同波长的激光脉冲在内膜壁的空气中的消融和蚀刻,以进行比较。当纤维尖端在样品表面上方0.5 mm处时,由激光脉冲引起的烧蚀很容易被视为膨胀气体的爆炸波,随后喷射出固体颗粒。

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