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Miniaturized three-dimensional endoscopic imaging system based on active stereovision

机译:基于主动立体视觉的微型三维内窥镜成像系统

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摘要

A miniaturized three-dimensional endoscopic imaging system is presented. The system consists of two imaging channels that can be used to obtain an image from an object of interest and to project a structured light onto the imaged object to measure the surface topology. The structured light was generated with a collimated monochromatic light source and a holographic binary phase grating. The imaging and projection channels were calibrated by use of a modified pinhole camera. The surface profile was extracted by use of triangulation between the projected feature points and the two channels of the endoscope. The imaging system was evaluated in three-dimensional measurements of several objects with known geometries. The results show that surface profiles of the objects with different surfaces and dimensions can be obtained at high accuracy. The in vivo measurements at tissue sites of human skin and an oral cavity demonstrated the potential of the technique for clinical applications.
机译:提出了一种小型的三维内窥镜成像系统。该系统由两个成像通道组成,可用于从感兴趣的对象获取图像并将结构化的光投射到成像的对象上以测量表面拓扑。用准直的单色光源和全息二进制相位光栅产生结构光。成像和投影通道通过使用改进的针孔相机进行校准。通过在投影的特征点和内窥镜的两个通道之间进行三角测量来提取表面轮廓。在具有已知几何形状的几个物体的三维测量中评估了成像系统。结果表明,可以高精度地获得具有不同表面和尺寸的物体的表面轮廓。在人皮肤和口腔的组织部位的体内测量证明了该技术在临床应用中的潜力。

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    《Applied optics》 |2003年第10期|共11页
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