红外中空光纤及其在医学中的应用

Yi-Wei Shi, Y. Matsuura, K. Iwai, M. Endo, T. Katagiri, M. Miyagi
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引用次数: 1

摘要

在中空玻璃纤维上涂覆银层和环烯烃聚合物层的技术已经被开发出来,用于红外激光的低损耗传输以及可见导光束。他们对Er:YAG和CO2激光产生的损耗仅为0.2 dB/m,对红色LD激光产生的损耗仅为0.7 dB/m。用石英帽对光纤的空心输出端进行隐士式密封,防止碎片进入光纤的中空输出端;在制造过程中,通过控制石英帽的远端几何形状,可以在空气和水中获得各种聚焦效果。Er:YAG激光的可控聚焦模式输出能量超过400 mJ,重复频率为10 hz,通过带密封帽的光纤在盐水中传递。采用带密封帽的中空纤维体外粉碎结石。研究表明,Er:YAG激光结合有效的给药系统可用于微创结石碎裂。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Infrared hollow optical fibers and their applications in medicine
Techniques for coating hollow glass fibers with layers of silver and cyclic olefin polymer have been developed for low-loss delivery of infrared laser light as well as a visible pilot beam. They have yielded losses of only 0.2 dB/m for Er:YAG and CO2 laser light and only 0.7 dB/m for red LD laser light. Debris is kept from entering the hollow output end of a fiber by hermitically sealing it with a quartz cap, and various focusing effects in both air and water have been obtained by controlling distal-end geometry of the caps during fabrication. Controlled focus patterns of Er:YAG laser light with an output energy of more than 400 mJ and a 10-Hz repetition rate have been delivered in saline through the fibers with sealing caps. Calculi were fragmented in vitro by using a hollow fiber with a sealing cap. It has been shown that Er:YAG laser combined with an effective delivery system could be used for minimally invasive calculi fragmentation.
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