ICVS/3B's - PT Government Associate Laboratory, Braga/Guimarães, Portugal.
J Endourol. 2013 Jul;27(7):826-34. doi: 10.1089/end.2012.0740. Epub 2013 May 28.
Precise needle puncture of the kidney is a challenging and essential step for successful percutaneous nephrolithotomy (PCNL). Many devices and surgical techniques have been developed to easily achieve suitable renal access. This article presents a critical review to address the methodologies and techniques for conducting kidney targeting and the puncture step during PCNL. Based on this study, research paths are also provided for PCNL procedure improvement.
Most relevant works concerning PCNL puncture were identified by a search of Medline/PubMed, ISI Web of Science, and Scopus databases from 2007 to December 2012. Two authors independently reviewed the studies.
A total of 911 abstracts and 346 full-text articles were assessed and discussed; 52 were included in this review as a summary of the main contributions to kidney targeting and puncturing.
Multiple paths and technologic advances have been proposed in the field of urology and minimally invasive surgery to improve PCNL puncture. The most relevant contributions, however, have been provided by the application of medical imaging guidance, new surgical tools, motion tracking systems, robotics, and image processing and computer graphics. Despite the multiple research paths for PCNL puncture guidance, no widely acceptable solution has yet been reached, and it remains an active and challenging research field. Future developments should focus on real-time methods, robust and accurate algorithms, and radiation free imaging techniques.
精准的肾脏穿刺是经皮肾镜碎石取石术(PCNL)成功的关键和必要步骤。为了实现合适的肾脏通道,已经开发了许多设备和手术技术。本文对 PCNL 过程中肾脏定位和穿刺步骤的方法和技术进行了综述,并为 PCNL 手术的改进提供了研究途径。
通过检索 Medline/PubMed、ISI Web of Science 和 Scopus 数据库,我们从 2007 年至 2012 年 12 月共检索到 911 篇摘要和 346 篇全文,两位作者分别对研究进行了评估和讨论。
共评估和讨论了 911 篇摘要和 346 篇全文,其中 52 篇被纳入综述,总结了肾脏定位和穿刺的主要贡献。
在泌尿外科和微创外科领域,已经提出了多种途径和技术进步,以改善 PCNL 穿刺。然而,最相关的贡献来自于医学成像引导、新的手术工具、运动跟踪系统、机器人技术以及图像处理和计算机图形学的应用。尽管 PCNL 穿刺引导有多种研究途径,但尚未达成广泛接受的解决方案,它仍然是一个活跃和具有挑战性的研究领域。未来的发展应集中于实时方法、稳健和准确的算法以及无辐射成像技术。