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COMBINATION OF FIBER-GUIDED PULSED ERBIUM AND HOLMIUM LASER RADIATION FOR TISSUE ABLATION UNDER WATER

机译:光纤脉冲E和HO激光辐射联合用于水下组织消融

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Because of the high absorption of near-infrared laser radiation in biological tissue, erbium lasers and holmium lasers emitting at 3 and 2 pm, respectively, have been proven to have optimal qualities for cutting or welding and coagulating tissue. To combine the advantages of both wavelengths, we realized a multiwavelength laser system by simultaneously guiding erbium and holmium laser radiation by means of a single zirconium fluoride (ZrF4) fiber. Laser-induced channel formation in water and poly(acrylamide) gel was investigated by the use of a time-resolved flash-photography setup, while pressure transients were recorded simultaneously with a needle hydrophone. The shapes and depths of vapor channels produced in water and in a submerged gel after single erbium and after combination erbium-holmium radiation delivered by means of a 400-mu m ZrF4 fiber were measured. Transmission measurements were performed to determine the amount of pulse energy available for tissue ablation. The effects of laser wavelength and the delay time between pulses of different wavelengths on the photomechanical and photothermal responses of meniscal tissue were evaluated in vitro by the use of histology. It was observed that the use of a short (200-mu s, 100-mJ) holmium laser pulse as a prepulse to generate a vapor bubble through which the ablating erbium laser pulse can be transmitted (delay time, 100 mu s) increases the cutting depth in meniscus from 450 to 1120 mu m as compared with the depth following a single erbium pulse. The results indicate that combination of erbium and halmium laser radiation precisely and efficiently cuts tissue under water with 20-50-mu m collateral tissue damage. (C) 1996 Optical Society of America [References: 49]
机译:由于生物组织中近红外激光辐射的高吸收性,已证明分别在下午3点和下午2点发射的b激光和激光具有用于切割或焊接和凝结组织的最佳质​​量。为了结合两种波长的优点,我们实现了一个多波长激光系统,该系统通过单氟化锆(ZrF4)光纤同时引导guiding和激光辐射。通过使用时间分辨闪光灯摄影装置研究了水和聚丙烯酰胺凝胶中激光诱导的通道形成,同时使用针式水听器同时记录了压力瞬变。测量了在单一and之后以及在通过400微米ZrF4纤维传输的combination- combination组合辐射后在水中和在浸没的凝胶中产生的蒸汽通道的形状和深度。进行透射测量以确定可用于组织消融的脉冲能量的量。利用组织学方法,体外评估了激光波长和不同波长的脉冲之间的延迟时间对半月板组织的光机械和光热反应的影响。观察到,使用短的(200μs,100mJ)laser激光脉冲作为预脉冲来产生蒸气泡,通过该蒸气泡可以传输烧蚀的laser激光脉冲(延迟时间为100μs)增加了与单个脉冲后的深度相比,弯月面的切割深度为450至1120微米。结果表明,结合使用and和radiation激光辐射可以准确而有效地在水下切割组织,对附带组织造成20-50微米的损伤。 (C)1996年美国眼镜学会[参考:49]

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