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用于X射线显微断层扫描的具有亚像素精度的径向镜头畸变校正。

Radial lens distortion correction with sub-pixel accuracy for X-ray micro-tomography.

作者信息

Vo Nghia T, Atwood Robert C, Drakopoulos Michael

出版信息

Opt Express. 2015 Dec 14;23(25):32859-68. doi: 10.1364/OE.23.032859.

Abstract

Distortion correction or camera calibration for an imaging system which is highly configurable and requires frequent disassembly for maintenance or replacement of parts needs a speedy method for recalibration. Here we present direct techniques for calculating distortion parameters of a non-linear model based on the correct determination of the center of distortion. These techniques are fast, very easy to implement, and accurate at sub-pixel level. The implementation at the X-ray tomography system of the I12 beamline, Diamond Light Source, which strictly requires sub-pixel accuracy, shows excellent performance in the calibration image and in the reconstructed images.

摘要

对于高度可配置且需要频繁拆卸以进行维护或更换部件的成像系统,畸变校正或相机校准需要一种快速的重新校准方法。在此,我们提出了基于正确确定畸变中心来计算非线性模型畸变参数的直接技术。这些技术速度快、易于实现,并且在亚像素级别上准确。在钻石光源I12光束线的X射线断层扫描系统上的实现,该系统严格要求亚像素精度,在校准图像和重建图像中都显示出了出色的性能。

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