Department of Urology, Vanderbilt Institute for Surgery and Engineering (VISE), Vanderbilt University Medical Center, Nashville, TN, USA.
Department of Mechanical Engineering, Vanderbilt Institute for Surgery and Engineering (VISE), Vanderbilt University, Nashville, TN, USA.
World J Urol. 2022 Mar;40(3):671-677. doi: 10.1007/s00345-021-03745-y. Epub 2021 Jun 16.
Image-guidance during partial nephrectomy enables navigation within the operative field alongside a 3-dimensional roadmap of renal anatomy generated from patient-specific imaging. Once a process is performed by the human mind, the technology will allow standardization of the task for the benefit of all patients undergoing robot-assisted partial nephrectomy. Any surgeon will be able to visualize the kidney and key subsurface landmarks in real-time within a 3-dimensional simulation, with the goals of improving operative efficiency, decreasing surgical complications, and improving oncologic outcomes. For similar purposes, image-guidance has already been adopted as a standard of care in other surgical fields; we are now at the brink of this in urology. This review summarizes touch-based approaches to image-guidance during partial nephrectomy, as the technology begins to enter in vivo human evaluation. The processes of segmentation, localization, registration, and re-registration are all described with seamless integration into the da Vinci surgical system; this will facilitate clinical adoption sooner.
在部分肾切除术期间进行图像引导,可在根据患者特定影像生成的肾脏解剖 3D 路线图的辅助下,对手术区域进行导航。人类完成某个过程后,该技术将有助于实现任务标准化,使所有接受机器人辅助部分肾切除术的患者受益。任何外科医生都可以在实时的 3D 模拟中可视化肾脏和关键的亚表面标志,从而提高手术效率、减少手术并发症并改善肿瘤学结果。出于类似的目的,图像引导已经在其他外科领域被采纳为标准护理;我们现在即将在泌尿科领域实现这一目标。这篇综述总结了部分肾切除术期间基于触摸的图像引导方法,因为该技术开始进入活体人体评估。分割、定位、配准和重新配准的过程都无缝集成到达芬奇手术系统中;这将更有利于尽快临床应用。