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Contrast transfer function in grating-based x-ray phase-contrast imaging

机译:基于光栅的X射线相位对比成像中的对比传递函数

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摘要

X-Ray grating interferometry is a method for x-ray wave front sensing and phase-contrast imaging that has been developed over past few years. Contrast and resolution are the criteria used to specify the quality of an image. In characterizing the performance of this interferometer, the contrast transfer function is considered in this paper. The oscillatory nature of the contrast transfer function (CTF) is derived and quantified for this interferometer. The illumination source and digital detector are both considered as significant factors controlling image quality, and it can be noted that contrast and resolution in turn depends primarily on the projected intensity profile of the array source and the pixel size of the detector. Furthermore, a test pattern phantom with a well-controlled range of spatial frequencies was designed and imaging of this phantom was simulated by a computer. Contrast transfer function behavior observed in the simulated image is consistent with our theoretical CTF. This might be beneficial for the evaluation and optimization of a grating-based x-ray phase contrast imaging system.
机译:X射线光栅干涉术是近几年开发的用于X射线波前感测和相衬成像的方法。对比度和分辨率是用于指定图像质量的标准。在表征这种干涉仪的性能时,本文考虑了对比度传递函数。对此干涉仪推导并量化了对比度传递函数(CTF)的振荡性质。照明源和数字检测器都被认为是控制图像质量的重要因素,可以注意到,对比度和分辨率又主要取决于阵列源的投影强度分布和检测器的像素大小。此外,设计了具有良好控制的空间频率范围的测试图案模型,并通过计算机模拟了该模型的成像。在模拟图像中观察到的对比度传递函数行为与我们的理论CTF一致。这对于基于光栅的X射线相衬成像系统的评估和优化可能是有益的。

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