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视频内镜畸变校正及其在内镜虚拟引导中的应用。

Videoendoscopic distortion correction and its application to virtual guidance of endoscopy.

作者信息

Helferty J P, Zhang C, McLennan G, Higgins W E

机构信息

The Pennsylvania State University, Department of Electrical Engineering, University Park 16802, USA.

出版信息

IEEE Trans Med Imaging. 2001 Jul;20(7):605-17. doi: 10.1109/42.932745.

Abstract

Modern video-based endoscopes offer physicians a wide-angle field of view (FOV) for minimally invasive procedures. Unfortunately, inherent barrel distortion prevents accurate perception of range. This makes measurement and distance judgment difficult and causes difficulties in emerging applications, such as virtual guidance of endoscopic procedures. Such distortion also arises in other wide FOV camera circumstances. This paper presents a distortion-correction technique that can automatically calculate correction parameters, without precise knowledge of horizontal and vertical orientation. The method is applicable to any camera-distortion correction situation. Based on a least-squares estimation, our proposed algorithm considers line fits in both FOV directions and gives a globally consistent set of expansion coefficients and an optimal image center. The method is insensitive to the initial orientation of the endoscope and provides more exhaustive FOV correction than previously proposed algorithms. The distortion-correction procedure is demonstrated for endoscopic video images of a calibration test pattern, a rubber bronchial training device, and real human circumstances. The distortion correction is also shown as a necessary component of an image-guided virtual-endoscopy system that matches endoscope images to corresponding rendered three-dimensional computed tomography views.

摘要

现代基于视频的内窥镜为医生提供了用于微创手术的广角视野(FOV)。不幸的是,固有的桶形失真会妨碍对距离的准确感知。这使得测量和距离判断变得困难,并给诸如内窥镜手术的虚拟引导等新兴应用带来难题。这种失真在其他广角FOV相机情况下也会出现。本文提出了一种失真校正技术,该技术可以自动计算校正参数,而无需精确了解水平和垂直方向。该方法适用于任何相机失真校正情况。基于最小二乘估计,我们提出的算法考虑了FOV两个方向上的直线拟合,并给出了一组全局一致的扩展系数和一个最佳图像中心。该方法对内窥镜的初始方向不敏感,并且比先前提出的算法提供更详尽的FOV校正。针对校准测试图案、橡胶支气管训练装置的内窥镜视频图像以及真实人体情况演示了失真校正过程。失真校正还被证明是将内窥镜图像与相应的渲染三维计算机断层扫描视图相匹配的图像引导虚拟内窥镜系统的必要组成部分。

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