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Modeling of the Movement of the Endoscopy Capsule inside G.I. Tract based on the Captured Endoscopic Images

机译:内窥镜胶囊内镜片内镜片的模拟。基于捕获的内窥镜图像的道路

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Wireless capsule endoscopy (WCE) is a noninvasive technology that provides excellent images of the intestinal lumen as the capsule moving along in the gastrointestinal (G.I.) tract. However, the biggest drawback of this technology is its incapability of localizing the capsule when an abnormality is found by the video source. Existing localization methods based on radio frequency (RF) and magnetic field suffer a great error due to the non-homogeneity of the human body and uncertainly of the movement of the endoscopic capsule. To complement the existing localization techniques, in this paper, we developed a series of image processing and visualization based algorithms to model the movement of the endoscopic capsule. First, a 3D map of the G.I. tract is generated to navigate the transition of the capsule. Then, by comparing the local similarity and feature matching between the consecutive frames, the speed and rotation angels of the capsule can be roughly estimated. Finally, by mapping the pattern of the capsule's movement onto the 3D G.I. tract map, we are able to simulate the entire transition of the endoscopic capsule in the 3D space. Empirical results show that the proposed method has a good estimation of the capsule's movement.
机译:无线胶囊内窥镜(WCE)是一种非侵入性的技术,可提供肠腔的优异图像,因为胶囊沿着胃肠道(G.I.)道。然而,当视频源发现异常时,这项技术的最大缺点是它无法定位胶囊。基于射频(RF)和磁场的现有定位方法由于人体的非均匀性以及内窥镜胶囊的运动而不确定地存在很大的错误。为了补充现有的本地化技术,在本文中,我们开发了一系列基于图像处理和基于可视化的算法来模拟内窥镜胶囊的运动。首先,G.I的3D地图。生成道路以导航胶囊的转换。然后,通过比较连续框架之间的局部相似性和特征,可以大致估计胶囊的速度和旋转天使。最后,通过将胶囊的运动映射到3D G.I上。道具图,我们能够模拟内窥镜胶囊在3D空间中的整个过渡。经验结果表明,该方法对胶囊的运动有很好的估计。

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