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Prototype of Video Endoscopic Capsule With 3-D Imaging Capabilities

机译:具有3D成像功能的视频内窥镜胶囊的原型

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Wireless video capsules can now carry out gastroenterological examinations. The images make it possible to analyze some diseases during postexamination, but the gastroenterologist could make a direct diagnosis if the video capsule integrated vision algorithms. The first step toward in situ diagnosis is the implementation of 3-D imaging techniques in the video capsule. By transmitting only the diagnosis instead of the images, the video capsule autonomy is increased. This paper focuses on the Cyclope project, an embedded active vision system that is able to provide 3-D and texture data in real time. The challenge is to realize this integrated sensor with constraints on size, consumption, and processing, which are inherent limitations of the video capsule. We present the hardware and software development of a wireless multispectral vision sensor which enables the transmission of the 3-D reconstruction of a scene in real time. An FPGA-based prototype has been designed to show the proof of concept. Experiments in the laboratory, in vitro, and in vivo on a pig have been performed to determine the performance of the 3-D vision system. A roadmap towardthe integrated system is set out.
机译:无线视频胶囊现在可以进行肠胃检查。图像使检查后分析某些疾病成为可能,但是如果视频胶囊集成了视觉算法,则肠胃科医生可以做出直接诊断。进行原位诊断的第一步是在视频封包中实施3-D成像技术。通过仅发送诊断信息而不是图像,可以提高视频胶囊的自主性。本文重点介绍Cyclope项目,这是一个嵌入式主动视觉系统,能够实时提供3-D和纹理数据。面临的挑战是要实现这种集成传感器,但要限制尺寸,消耗量和处理能力,这是视频盒的固有局限性。我们介绍了无线多光谱视觉传感器的硬件和软件开发,该传感器能够实时传输场景的3D重建。设计了一个基于FPGA的原型来展示概念证明。已经在猪的实验室,体外和体内进行了实验,以确定3-D视觉系统的性能。制定了向集成系统发展的路线图。

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