Department of Urology, Tan Tock Seng Hospital, Singapore.
Department of Urology and Robotic Surgery, Ruby Hall Clinic, Pune, India.
J Endourol. 2021 Jun;35(6):e919. doi: 10.1089/end.2018.0003.
To make percutaneous access easier in PCNL, we developed Automated Needle Targeting with X-ray (ANT-X).
ANT-X uses an image registration software with a closed loop feedback system to autoalign the puncture needle to the desired calyx using the bullseye technique. We tried percutaneous punctures on a live pig model and compared the results with free-hand technique. We then performed our first PCNL in a human subject with the aid of ANT-X. Our patient was a 48 year-old gentleman with a 1.4cm left lower pole stone.
Initial results for live animal trial showed radiation exposure for robot-assisted arm during puncture was reduced by 26% compared to the free-hand technique (8.2mGy vs 11.2mGy). In the human trial, obtaining percutaneous access was successful at first attempt.
ANT-X system can help surgeons feel confident and potentially reduce complications, hence enabling more surgeons to adopt this procedure.
为了使经皮肾镜取石术(PCNL)中的经皮穿刺更容易,我们开发了 X 线引导自动穿刺针定位(ANT-X)系统。
ANT-X 系统使用带有闭环反馈系统的图像配准软件,利用十字瞄准技术自动将穿刺针对准目标肾盂。我们在活体猪模型上进行了经皮穿刺,并将结果与徒手技术进行了比较。随后,我们在一名患者中辅助使用 ANT-X 系统进行了首例 PCNL。患者为 48 岁男性,左肾下极有 1.4cm 结石。
在活体动物试验的初步结果中,与徒手技术相比,机器人辅助臂在穿刺过程中的辐射暴露减少了 26%(8.2mGy 比 11.2mGy)。在人体试验中,首次尝试即成功获得了经皮穿刺通道。
ANT-X 系统可以帮助外科医生增强信心,并有可能减少并发症,从而使更多的外科医生能够采用该手术。