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利用倾斜微相机阵列实现小盲区的大视野可视化用于腹腔镜手术

Large-Field-of-View Visualization with Small Blind Spots Utilizing Tilted Micro-Camera Array for Laparoscopic Surgery.

作者信息

Watras Alex J, Kim Jae-Jun, Ke Jianwei, Liu Hewei, Greenberg Jacob A, Heise Charles P, Hu Yu Hen, Jiang Hongrui

机构信息

Department of Electrical and Computer Engineering, University of Wisconsin-Madison, Madison, WI 53706, USA.

Department of Surgery, University of Wisconsin School of Medicine and Public Health, Madison, WI 53792, USA.

出版信息

Micromachines (Basel). 2020 May 10;11(5):488. doi: 10.3390/mi11050488.

Abstract

Existing laparoscopic surgery systems use a single laparoscope to visualize the surgical area with a limited field of view (FoV), necessitating maneuvering the laparoscope to search a target region. In some cases, the laparoscope needs to be moved from one surgical port to another one to detect target organs. These maneuvers would cause longer surgical time and degrade the efficiency of operation. We hypothesize that if an array of cameras can be deployed to provide a stitched video with an expanded FoV and small blind spots, the time required to perform multiple tasks at different sites can be significantly reduced. We developed a micro-camera array that can enlarge the FoV and reduce blind spots between the cameras by optimizing the angle of cameras. The video stream of this micro-camera array was designed to be processed in real-time to provide a stitched video with the expanded FoV. We mounted this micro-camera array to a Fundamentals of Laparoscopic Surgery (FLS) laparoscopic trainer box and designed an experiment to validate the hypothesis above. Surgeons, residents, and a medical student were recruited to perform a modified bean drop task, and the completion time was compared against that measured using a traditional single-camera laparoscope. It was observed that utilizing the micro-camera array, the completion time of the modified bean drop task was 203 ± 55 s while using the laparoscope, the completion time was 245 ± 114 s, with a -value of 0.00097. It is also observed that the benefit of using an FoV-expanded camera array does not diminish for subjects who are more experienced. This test provides convincing evidence and validates the hypothesis that expanded FoV with small blind spots can reduce the operation time for laparoscopic surgical tasks.

摘要

现有的腹腔镜手术系统使用单个腹腔镜来可视化手术区域,但其视野(FoV)有限,因此需要操纵腹腔镜来搜索目标区域。在某些情况下,需要将腹腔镜从一个手术端口移至另一个端口以检测目标器官。这些操作会导致手术时间延长并降低手术效率。我们推测,如果能够部署一系列摄像头以提供具有扩大视野和小盲点的拼接视频,则可以显著减少在不同部位执行多项任务所需的时间。我们开发了一种微摄像头阵列,通过优化摄像头角度来扩大视野并减少摄像头之间的盲点。该微摄像头阵列的视频流设计为实时处理,以提供具有扩大视野的拼接视频。我们将此微摄像头阵列安装到腹腔镜手术基础(FLS)腹腔镜训练箱上,并设计了一项实验来验证上述推测。招募了外科医生、住院医师和一名医学生来执行一项改良的豆子掉落任务,并将完成时间与使用传统单摄像头腹腔镜测量的时间进行比较。观察到,使用微摄像头阵列时,改良豆子掉落任务的完成时间为203±55秒,而使用腹腔镜时,完成时间为245±114秒,p值为0.00097。还观察到,对于经验更丰富的受试者,使用扩大视野摄像头阵列的益处并未减少。该测试提供了令人信服的证据,并验证了以下推测:具有小盲点的扩大视野可减少腹腔镜手术任务的操作时间。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/12ae/7281158/97831ed26888/micromachines-11-00488-g001.jpg

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