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首页> 外文期刊>Current opinion in urology >Extracorporeal shock-wave lithotripsy: is it still valid in the era of robotic endourology? Can it be more efficient?
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Extracorporeal shock-wave lithotripsy: is it still valid in the era of robotic endourology? Can it be more efficient?

机译:体外冲击波Lithotripsy:它仍然在机器人辛苦学的时代有效吗? 它可以更高效吗?

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Purpose of review The aim of the article is to evaluate the actual role of extracorporeal shock-wave lithotripsy (ESWL) in the management of urolithiasis based on the new developments of flexible ureterorenoscopy (FURS) and percutaneous nephrolithotomy (PCNL). Recent findings In Western Europe, there is a significant change of techniques used for treatment of renal stones with an increase of FURS and a decrease of ESWL. The reasons for this include the change of indications, technical improvement of the endourologic armamentarium, including robotic assistance. Mostly relevant is the introduction of digital reusable and single-use flexible ureterorenoscopes, whereas micro-PCNL has been abandoned. Some companies have stopped production of lithotripters and novel ideas to improve the efficacy of shock waves have not been implemented in the actual systems. Promising shock-wave technologies include the use of burst-shock-wave lithotripsy (SWL) or high-frequent ESWL. The main advantage would be the very fast pulverization of the stone as shown in in-vitro models. Summary The role of ESWL in the management of urolithiasis is decreasing, whereas FURS is constantly progressing. Quality and safety of intracorporeal shock-wave lithotripsy using holmium:YAG-laser under endoscopic control clearly outweighs the advantages of noninvasive ESWL. To regain ground, new technologies like burst-SWL or high-frequent ESWL have to be implemented in new systems.
机译:审查目的的目的是评估体外冲击波碎石术(ESWL)在尿路病毒(皮草)和经皮肾病术(PCN1)的新发展中对尿道病管理中的实际作用。最近在西欧的发现,用于治疗肾脏石头的技术的显着变化,随着皮毛的增加和ESWL的减少。这包括改变适应症的变化,源香营养学盔甲的技术改善,包括机器人援助。主要是相关的是引入数字可重复使用和单使用的灵活的脐带景镜,而Micro-PCNL已被遗弃。有些公司已停止生产Lithotriper和新颖的想法,以提高防震波的功效尚未在实际系统中实施。承诺的冲击波技术包括使用突发冲击波碎石术(SWL)或高频率的ESWL。主要优点是石材的快速粉碎,如体外模型所示。发明内容ESWL在尿道病管理中的作用是下降的,而毛皮不断进步。使用Holmium的体内冲击波型材的质量和安全性:内窥镜控制下的YAG激光显然超过了非侵入性ESWL的优势。为了重新获得地面,必须在新系统中实现像Burst-SWL或高频率的新技术。

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