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Lens distortion in optically coupled digital x-ray imaging.

机译:光学耦合数字X射线成像中的镜头畸变。

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摘要

The objectives of this research are to analyze geometrical distortions introduced by relay lenses in optically coupled digital x-ray imaging systems and to introduce an algorithm to correct such distortions. METHODS: The radial and tangential errors introduced by a relay lens in digital x-ray imaging were experimentally measured, using a lens-coupled CCD (charge coupled device) prototype. An algorithm was introduced to correct these distortions. Based on an x-ray image of a standard calibration grid, the algorithm first identified the location of the optical axis, then corrected the radial and tangential distortions using polynomial transformation technique. RESULTS: Lens distortions were classified and both radial and tangential distortions introduced by lenses were corrected using polynomial transformation. For the specific lens-CCD prototype investigated, the mean positional error caused by the relay lens was reduced by the correction algorithm from about eight pixels (0.69 mm) to less than 1.8 pixels (0.15 mm). Our investigation also shows that the fourth order of polynomial for the correction algorithm provided the best correction result. CONCLUSIONS: Lens distortions should be considered in position-dependent, quantitative x-ray imaging and such distortions can be minimized in CCD x-ray imaging by appropriate algorithm, as demonstrated in this paper.
机译:这项研究的目的是分析由中继透镜在光耦合数字X射线成像系统中引入的几何畸变,并介绍一种校正这种畸变的算法。方法:使用透镜耦合CCD(电荷耦合器件)原型,对中继透镜在数字X射线成像中引入的径向和切向误差进行了实验测量。引入了一种算法来纠正这些失真。该算法基于标准校准网格的X射线图像,首先确定光轴的位置,然后使用多项式变换技术校正径向和切向畸变。结果:对镜片畸变进行了分类,并使用多项式变换校正了由镜片引起的径向和切向畸变。对于所研究的特定镜头-CCD原型,通过校正算法将中继镜头引起的平均位置误差从大约八个像素(0.69毫米)减少到小于1.8个像素(0.15毫米)。我们的研究还表明,校正算法的多项式四阶提供了最佳校正结果。结论:如本文所述,在位置相关的定量X射线成像中应考虑透镜畸变,并且可以通过适当的算法将CCD X射线成像中的畸变降至最低。

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