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碎石术对钬激光光束轮廓的影响。

Effect of lithotripsy on holmium:YAG optical beam profile.

作者信息

Lee Ho, Ryan Robert T, Teichman Joel M H, Landman Jaime, Clayman Ralph V, Milner Thomas E, Welch A J

机构信息

Department of Mechanical Engineering, The University of Texas, Austin, Texas, USA.

出版信息

J Endourol. 2003 Mar;17(2):63-7. doi: 10.1089/08927790360587351.

Abstract

PURPOSE

To determine the effect of holmium:YAG lithotripsy on the optical beam profile.

MATERIALS AND METHODS

Beam profiles of the laser light from holmium:YAG optical fiber systems were characterized with a pyroelectric camera. Beam profiles were measured with 272-microm and 365-microm optical fibers both straight and bent to simulate lower-pole ureteronephroscopy. Struvite calculi were irradiated. Beam profiles and energy outputs were characterized for the fibers before and after ablation. Ablation crater geometry was characterized with optical coherence tomography.

RESULTS

Undamaged, straight fibers produced a near-Gaussian beam profile. Craters showed a similar near-Gaussian shape. Undamaged, bent 272-microm fibers produced a near-Gaussian beam but slightly flatter profile than the straight fiber. The bent 272-microm fiber transmitted 99% to 100% of the energy, similar to the 100% transmission of the straight fibers. After ablation, measured energy output dropped by 30% within 50 pulses at 0.2 J pulse energy. The damaged fibers produced irregular beam profiles with hot spots. Craters showed irregular contours.

CONCLUSIONS

During Ho:YAG lithotripsy, the beam profile at the optical fiber tip approaches a Gaussian distribution. This shape corresponds to the crater produced on the stone surface. With further ablation, the beam profile becomes erratic and unpredictable, with loss of lithotripsy efficiency. The findings provide further insight into the photothermal mechanism of Ho:YAG lithotripsy.

摘要

目的

确定钬激光碎石术对光束轮廓的影响。

材料与方法

使用热释电相机对钬激光光纤系统发出的激光的光束轮廓进行表征。使用272微米和365微米的光纤,分别在直的和弯曲状态下测量光束轮廓,以模拟下极输尿管肾镜检查。对鸟粪石结石进行照射。对消融前后光纤的光束轮廓和能量输出进行表征。使用光学相干断层扫描对消融坑的几何形状进行表征。

结果

未受损的直光纤产生接近高斯分布的光束轮廓。消融坑呈现出类似的接近高斯的形状。未受损的弯曲272微米光纤产生接近高斯的光束,但轮廓比直光纤略平。弯曲的272微米光纤传输99%至100%的能量,与直光纤100%的传输率相似。在0.2焦耳脉冲能量下,消融50个脉冲后,测量的能量输出下降了30%。受损光纤产生带有热点的不规则光束轮廓。消融坑呈现出不规则的轮廓。

结论

在钬激光碎石术中,光纤尖端的光束轮廓接近高斯分布。这种形状与结石表面产生的消融坑相对应。随着进一步消融,光束轮廓变得不稳定且不可预测,碎石效率降低。这些发现为钬激光碎石术的光热机制提供了进一步的见解。

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