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内镜图像拼接中的自主磁导航

Autonomous Magnetic Navigation in Endoscopic Image Mosaics.

机构信息

Multi-Scale Robotics Lab, ETH Zurich, Tannenstrasse 3, Zurich, 8092, Switzerland.

Department of Obstetrics, University Hospital of Zurich, Rämistrasse 100, Zürich, 8092, Switzerland.

出版信息

Adv Sci (Weinh). 2024 May;11(19):e2400980. doi: 10.1002/advs.202400980. Epub 2024 Mar 14.

Abstract

Endoscopes navigate within the human body to observe anatomical structures with minimal invasiveness. A major shortcoming of their use is their narrow field-of-view during navigation in large, hollow anatomical regions. Mosaics of endoscopic images can provide surgeons with a map of the tool's environment. This would facilitate procedures, improve their efficiency, and potentially generate better patient outcomes. The emergence of magnetically steered endoscopes opens the way to safer procedures and creates an opportunity to provide robotic assistance both in the generation of the mosaic map and in navigation within this map. This paper proposes methods to autonomously navigate magnetic endoscopes to 1) generate endoscopic image mosaics and 2) use these mosaics as user interfaces to navigate throughout the explored area. These are the first strategies, which allow autonomous magnetic navigation in large, hollow organs during minimally invasive surgeries. The feasibility of these methods is demonstrated experimentally both in vitro and ex vivo in the context of the treatment of twin-to-twin transfusion syndrome. This minimally invasive procedure is performed in utero and necessitates coagulating shared vessels of twin fetuses on the placenta. A mosaic of the vasculature in combination with autonomous navigation has the potential to significantly facilitate this challenging surgery.

摘要

内窥镜在人体内导航,以最小的侵入性观察解剖结构。它们在导航大型中空解剖区域时的主要缺点是视场狭窄。内窥镜图像的马赛克可以为外科医生提供工具环境的地图。这将有助于手术,提高其效率,并有可能为患者带来更好的治疗效果。磁引导内窥镜的出现为更安全的手术开辟了道路,并为生成马赛克地图和在该地图内导航提供了机器人辅助的机会。本文提出了一些方法,用于自主导航磁性内窥镜,以 1)生成内窥镜图像马赛克,以及 2)将这些马赛克用作在探索区域中导航的用户界面。这些是首次允许在微创手术中对大型中空器官进行自主磁导航的策略。这些方法的可行性已在体外和体内实验中得到了证明,涉及双胞胎输血综合征的治疗。这种微创手术是在子宫内进行的,需要凝固胎盘上双胞胎共用的血管。血管马赛克与自主导航相结合,有可能显著简化这种具有挑战性的手术。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7004/11109657/d34aaf2406a1/ADVS-11-2400980-g005.jpg

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