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Application of a test object free method for determination of the modulation transfer function in grating-based phase-contrast imaging

机译:基于光栅的相位对比度成像中的调制传递函数测定测试对象的应用

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Assessing the image resolution of the differential phase (dP) and the dark field (DF) image in grating-based phase-contrast imaging (GB-PCI) requires a precision machined wedge and edge respectively in order to generate an accurate edge spread function (ESF) from which the modulation transfer function (MTF) can be calculated. Imperfect test objects, i.e. truncated wedges (dP), unsharp or too thick edges (DF), can lead both to an over-or an underestimation of image sharpness, making the MTF potentially test object dependent. Here the object free method of Kuhls-Gilcrist, which resolves the MTF from noise power spectra (NPS method), is applied to the transmission, dark field and differential phase image in GB-PCI. In parallel to the NPS method, each MTF was also determined using a test object based approach. Good agreement was found between both approaches. Moreover, it was possible to distinguish unsuitable test objects and this work illustrated that selecting DF test objects can be difficult. This sharpness measurement method offers a robust alternative to test object approaches and can be used to verify sharpness of test objects or to generate an accurate MTF if no such object is available.
机译:在光栅的相位对比度成像(GB-PCI)中评估差分阶段(DP)和暗场(DF)图像的图像分辨率,需要分别精密加工楔形和边缘,以便产生精确的边缘扩展功能( ESF)可以计算调制传递函数(MTF)。不完美的测试对象,即截断的楔子(DP),unsharp或太厚的边缘(DF),可以导致过度或低估图像清晰度,使MTF可能依赖于测试对象。这里,kuhls-gilcrist的对象可以从噪声功率谱(nps方法)中解析MTF,应用于GB-PCI中的传输,暗场和差分相位图像。与NPS方法并行,每个MTF也使用基于测试对象的方法确定。两种方法都发现了良好的协议。此外,可以区分不合适的测试对象,并且说明选择DF测试对象可能难以困难。这种清晰度测量方法提供了一种强大的替代方法来测试对象方法,可用于验证测试对象的清晰度,或者如果没有此类对象可用,则可以生成准确的MTF。

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