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Flexible delivery of Er:YAG radiation at 2.94 μm with novel hollow-core silica glass fibres: Demonstration of tissue ablation

机译:用新型空心石英玻璃纤维灵活地传送2.94μm的Er:YAG辐射:演示组织消融

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In this work we present the delivery of high energy Er:YAG laser pulses operating at 2.94 urn through a hollow-core negative curvature fibre (HC-NCF) and a hollow-core photonic crystal fibre (HC-PCF) and their use for the ablation of biological tissue. In HC-NCF fibres, which have been developed recently, the laser radiation is confined in a hollow core and by an anti-resonant or reflection principle (also known as ARROW). Both fibres are made of fused silica which has high mechanical and chemical durability, is bio-inert and results in a fibre with the flexibility that lends itself to easy handling and minimally invasive procedures. The HC-NCF structure consists of only one ring of capillaries around a realtively large core, followed by a protecting outer layer, hence the preform is relatively easy to build compared to traditional HC-PCF. The measured attenuation at 2.94 μm is 0.06 dB/m for the HC-NCF and 1.2 dB/m for the HC-PCF. Both fibres have a single mode output beam profile which can be advantageous for surgical applications as the beam profile is maintained during fibre movement. We demonstrate delivery of high energy pulses through both fibres, well above the thresholds needed for the ablation of biological tissue in non-contact and contact mode. Delivered energy densities reached > 750 J/cm~2 after 10 m of HC-NCF and > 3400 J/cm~2 through a 44 cm HC-PCF. This flexible high energy delivery system offers an alternative to existing beam delivery systems such as articulated arms and large core multi-mode fibres with enhanced capabilities.
机译:在这项工作中,我们介绍了通过空心负曲率光纤(HC-NCF)和空心光子晶体光纤(HC-PCF)在2.94微米下工作的高能Er:YAG激光脉冲的传输及其在光纤中的应用生物组织的消融。在最近开发的HC-NCF纤维中,激光辐射通过反共振或反射原理(也称为ARROW)被限制在空心中。两种纤维均由熔融石英制成,具有较高的机械和化学耐久性,是生物惰性的,因此可以使纤维具有柔韧性,使其易于处理和侵入性最小。 HC-NCF结构仅由围绕着一个真正大芯子的一圈毛细血管组成,后面是一个保护性外层,因此与传统的HC-PCF相比,预成型件相对容易制造。对于HC-NCF,在2.94μm处测得的衰减为0.06 dB / m,对于HC-PCF,为1.2 dB / m。两种光纤均具有单模输出光束轮廓,这对于外科手术应用可能是有利的,因为光束轮廓在光纤移动过程中得以保持。我们展示了通过两条纤维传递的高能脉冲,远高于在非接触和接触模式下消融生物组织所需的阈值。 HC-NCF 10 m后,传递的能量密度达到> 750 J / cm〜2,通过44 cm HC-PCF达到3400 J / cm〜2。这种灵活的高能量传输系统为现有的光束传输系统提供了替代方案,例如铰接臂和具有增强功能的大芯多模光纤。

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