首页> 外文会议>Optical Interactions with Tissue and Cells XVII; Progress in Biomedical Optics and Imaging; vol.7, no.7 >Various shape bubbles generated by Ho:YAG laser irradiation for vascular treatments
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Various shape bubbles generated by Ho:YAG laser irradiation for vascular treatments

机译:Ho:YAG激光辐照产生的各种形状的气泡,用于血管治疗

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Various shape bubbles were generated by changing holmium-yttrium-aluminum-garnet (Ho:YAG) laser irradiation parameters. Intensive pressure waves induced by their bubble collapse were measured. The Ho:YAG laser-induced bubble in water-containing liquid had been reported by many authors regarding its shape and generated collapse pressure. However, controllability of the bubble shape and generated collapse pressure with various irradiation parameters has been still unclear. In our experiments, we changed the core diameter of optical fiber (400μm or 600μm), laser pulsewidth (FWHM 100-300μs or 50-120μs, depends on laser output energy), and positions of the optical fiber tip in a sheath. The bubble shapes were observed with the time resolved flashlamp photography. The expansion and contraction rates of the bubble volume were determined by the obtained bubble shapes. The collapse pressure was measured with a small diameter (0.5mm) calibrated hydrophone. The long Ho:YAG laser pulse irradiation made long shape bubble so-called "pear shaped" bubble. This pear shaped bubble generated low collapse pressure comparing to the spherical shape bubble which was generated by the short pulsewidth. Using the constant laser pulse energy, we obtained large volume bubbles with high collapse pressure by the optical fiber of 600μm core diameter. When the optical fiber tip was located in the sheath, the bubble expanded to the lateral direction, and then the high collapse pressure was observed along the lateral direction. Therefore, we could arrange the bubble shape by changing the irradiation parameters. We discussed the proper bubble shape for various intra-vascular applications.
机译:通过改变-钇-铝-石榴石(Ho:YAG)激光辐照参数会生成各种形状的气泡。测量了由气泡破裂引起的强压力波。许多作者已经报道了Ho:YAG激光在含水液体中引起的气泡的形状和产生的崩塌压力。但是,利用各种照射参数对气泡形状和产生的崩塌压力的可控性仍不清楚。在我们的实验中,我们更改了光纤的纤芯直径(400μm或600μm),激光脉冲宽度(FWHM100-300μs或50-120μs,取决于激光输出能量)以及光纤尖端在护套中的位置。用时间分辨闪光灯摄影观察气泡形状。气泡体积的膨胀率和收缩率由所获得的气泡形状确定。用小直径(0.5mm)校准的水听器测量坍塌压力。长Ho:YAG激光脉冲辐照制成长形气泡,即所谓的“梨形”气泡。与由短脉冲宽度产生的球形气泡相比,这种梨形气泡产生了较低的破裂压力。使用恒定的激光脉冲能量,我们通过纤芯直径为600μm的光纤获得了具有高坍塌压力的大体积气泡。当光纤尖端位于护套中时,气泡向横向方向膨胀,然后沿横向方向观察到高的塌陷压力。因此,我们可以通过更改照射参数来排列气泡形状。我们讨论了各种血管内应用的合适气泡形状。

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