Basic and advanced technological evolution of laser lithotripsy over the past decade: An educational review by the European Society of Urotechnology Section of the European Association of Urology.

IF 1 Q4 UROLOGY & NEPHROLOGY Turkish journal of urology Pub Date : 2021-05-01 DOI:10.5152/TUD.2021.21030
L. Tzelves, B. Somani, M. Berdempes, Titos Markopoulos, A. Skolarikos
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引用次数: 6

Abstract

Laser disintegration of urinary stones is a cornerstone of urolithiasis treatment in the modern era. Despite the wide clinical use of stone lasers, basic and advanced technological achievements and developments are difficult to comprehend and interpret by the average urologist. A descriptive analysis of laser production and stone disintegration mechanisms was performed. We focused on physics of modern types of lithotripters, the construction of laser fibers, laser parameters, new modes, settings, and lithotripsy techniques. The main principle of laser emission remains the same since the first emitting laser was produced. Peak power density and short interaction time lead to photothermal effects responsible for stone disintegration. Modern lithotripters such as Holmium: YAG (low/high power, Moses technology) and thulium fiber laser show basic construction differences with the physical properties of the latter being superior, at least in in vitro studies. By adjusting lasing parameters, a wide spectrum of stone ablation from fragmentation to dusting can be achieved. New technology allows for the production of real dust. Knowledge of laser fiber construction and physical properties are useful in marketing and clinical use. Urologists should understand the physical and physiological background of the lasers used in their everyday practice for stone fragmentation.
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在过去的十年里,激光碎石术的基础和先进技术的发展:欧洲泌尿外科协会欧洲泌尿外科学会的教育回顾。
激光崩解尿路结石是现代尿路结石治疗的基石。尽管结石激光在临床上广泛使用,但基础和先进的技术成果和发展很难被普通泌尿科医生理解和解释。对激光生产和石材崩解机理进行了描述性分析。我们集中讨论了现代碎石机的物理特性、激光光纤的构造、激光参数、新模式、设置和碎石机技术。激光发射的主要原理自第一台发射激光器问世以来一直保持不变。峰值功率密度和较短的相互作用时间导致光热效应导致石材崩解。现代碎石机,如Holmium: YAG(低/高功率,摩西技术)和铥光纤激光器显示出基本的结构差异,后者的物理特性更优越,至少在体外研究中是这样。通过调整激光参数,可以实现从碎裂到粉尘的广泛范围的石材消融。新技术允许产生真正的粉尘。了解激光光纤的结构和物理特性在市场和临床应用中是有用的。泌尿科医生应该了解在日常手术中使用激光治疗结石碎裂的物理和生理背景。
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来源期刊
Turkish journal of urology
Turkish journal of urology Medicine-Urology
CiteScore
2.10
自引率
0.00%
发文量
53
期刊介绍: The aim of the Turkish Journal of Urology is to contribute to the literature by publishing scientifically high-quality research articles as well as reviews, editorials, letters to the editor and case reports. The journal’s target audience includes, urology specialists, medical specialty fellows and other specialists and practitioners who are interested in the field of urology.
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