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Experimental utilization of the holmium laser in a model of ureteroscopic lithotripsy: energy analysis.

机译:laser激光在输尿管镜碎石术模型中的实验利用:能量分析。

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BACKGROUND AND OBJECTIVE: Medical lasers have rapidly expanded in both indications and utilization. We have developed a simple model for the investigation of various modalities of lithotripsy using readily available silicate stones of uniform mass. MATERIALS AND METHODS: The holmium:YAG VersaPulse Select (Coherent, Palo Alto, CA) was used in these experiments to define the relation between fiber diameter and efficacy of stone fragmentation. For each fiber, lithotripsy was performed in an incremental fashion at 0.6, 0.8, and 1.0 J at a frequency of 10, 16, and 20 pulses per second at each energy level. RESULTS: Total kilojoules did not differ between any fibers investigated, supporting the consistency of our methodology. The power density of the holmium laser energy, as expressed as total kJ/area, decreases in proportion to increasing fiber diameter. We expected an increase in fragmentation success as fiber diameter decreased (at equal energy output). However, peak lithotripsy occurred with the 365- and 550-microm fibers, whereas neither the 200- nor the 1000-microm fibers was effective. CONCLUSION: This model utilizing a silicate stone phantom supports our clinical observation that the 365-microm fiber (and additionally the 550-microm fiber) provides the best method for efficient intracorporeal lithotripsy.
机译:背景与目的:医用激光在适应症和应用领域都迅速发展。我们已经开发出了一种简单的模型,用于使用均一质量好的随时可用的硅石来研究各种碎石术。材料与方法:在这些实验中使用The:YAG VersaPulse Select(Coherent,加利福尼亚州帕洛阿尔托)来确定纤维直径与碎石功效之间的关系。对于每根光纤,在每种能量水平下,以每秒10、16和20个脉冲的频率以0.6、0.8和1.0 J的增量方式进行碎石术。结果:所研究的任何纤维之间的总千焦耳均无差异,支持了我们方法的一致性。 total激光能量的功率密度(以总kJ /面积表示)与纤维直径的增加成比例地降低。我们预计随着纤维直径的减小(在相等的能量输出下),碎裂成功率会增加。但是,在365和550微米的纤维中出现了碎石峰,而200微米和1000微米的纤维均无效。结论:利用硅酸盐石幻影的模型支持了我们的临床观察,即365微米纤维(以及550微米纤维)提供了有效的体内碎石术的最佳方法。

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