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Constructing spherical panoramas of a bladder phantom from endoscopic video using bundle adjustment

机译:使用束调整从内窥镜视频构建膀胱幻影的球形全景

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The high recurrence rate of bladder cancer requires patients to undergo frequent surveillance screenings over their lifetime following initial diagnosis and resection. Our laboratory is developing panoramic stitching software that would compile several minutes of cystoscopic video into a single panoramic image, covering the entire bladder, for review by an urolgist at a later time or remote location. Global alignment of video frames is achieved by using a bundle adjuster that simultaneously recovers both the 3D structure of the bladder as well as the scope motion using only the video frames as input. The result of the algorithm is a complete 360° spherical panorama of the outer surface. The details of the software algorithms are presented here along with results from both a virtual cystoscopy as well from real endoscopic imaging of a bladder phantom. The software successfully stitched several hundred video frames into a single panoramic with subpixel accuracy and with no knowledge of the intrinsic camera properties, such as focal length and radial distortion. In the discussion, we outline future work in development of the software as well as identifying factors pertinent to clinical translation of this technology.
机译:膀胱癌的高复发率要求患者在初步诊断和切除后在其寿命中经历频繁的监测筛查。我们的实验室正在开发全景拼接软件,将几分钟的膀胱镜视频编译成一个全景图像,覆盖整个膀胱,以便在稍后的时间或远程位置审查。通过使用束调节器来实现视频帧的全局对准,该束调节器同时使用囊的3D结构以及仅使用作为输入的视频帧的范围运动。算法的结果是外表面的完整360°球形全景。这里的软件算法的细节以及虚拟膀胱镜检查的结果以及来自膀胱幻像的真正内窥镜成像。该软件通过子像素精度成功地缝合了几百个视频帧,并不知道内在相机属性,例如焦距和径向失真等知识。在讨论中,我们概述了未来的软件开发工作,以及识别与该技术的临床翻译有关的因素。

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