Department of Urology, Ng Teng Fong General Hospital, Singapore, Singapore.
Urology Unit, Azienda Ospedaliero-Universitaria delle Marche, Università Politecnica delle Marche, Via Conca 71, 60127, Ancona, Italy.
Curr Urol Rep. 2023 Jun;24(6):271-280. doi: 10.1007/s11934-023-01155-8. Epub 2023 Mar 10.
Kidney puncture is a key step in percutaneous nephrolithotomy (PCNL). Ultrasound/fluoroscopic-guided access to the collecting systems is commonly used in PCNL. Performing a puncture is often challenging in kidneys with congenital malformations or complex staghorn stones. We aim to perform a systematic review to examine data on in vivo applications, outcomes, and limitations of using artificial intelligence and robotics for access in PCNL.
The literature search was performed on November 2, 2022, using Embase, PubMed, and Google Scholar. Twelve studies were included. 3D in PCNL is useful for image reconstruction but also in 3D printing with definite benefits seen in improving anatomical spatial understanding for preoperative and intraoperative planning. 3D model printing and virtual and mixed reality allow for an enhanced training experience and easier access which seems to translate into a shorter learning curve and better stone-free rate compared to standard puncture. Robotic access improves the accuracy of the puncture for ultrasound- and fluoroscopic-guided access in both supine and prone positions. The potential advantage robotics are using artificial intelligence to do remote access, reduced number of needle punctures, and less radiation exposure during renal access. Artificial intelligence, virtual and mixed reality, and robotics may play a key role in improving PCNL surgery by enhancing all aspects of a successful intervention from entry to exit. There is a gradual adoption of this newer technology into clinical practice but is yet limited to centers with access and the ability to afford this.
经皮肾镜碎石术(PCNL)中肾脏穿刺是关键步骤。超声/透视引导下进入集合系统是 PCNL 的常用方法。在存在先天性畸形或复杂鹿角结石的肾脏中,进行穿刺常常具有挑战性。我们旨在进行系统评价,检查人工智能和机器人在 PCNL 中用于引导的体内应用、结果和局限性的数据。
文献检索于 2022 年 11 月 2 日在 Embase、PubMed 和 Google Scholar 上进行。共纳入 12 项研究。PCNL 中的 3D 技术不仅有助于图像重建,而且在 3D 打印方面也具有明确的优势,可改善术前和术中规划的解剖空间理解。3D 模型打印以及虚拟和混合现实可以增强培训体验,更容易进行操作,似乎可以缩短学习曲线并提高无石率,与标准穿刺相比具有优势。机器人引导提高了超声和透视引导下仰卧位和俯卧位穿刺的准确性。机器人利用人工智能进行远程访问、减少穿刺针数量以及减少肾脏进入时的辐射暴露,具有潜在优势。人工智能、虚拟和混合现实以及机器人技术可能通过增强从进入到退出的成功干预的各个方面,在改善 PCNL 手术中发挥关键作用。这种新技术正在逐渐应用于临床实践,但仅限于有条件和有能力负担得起的中心。