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Spatial resolution characterization of differential phase contrast CT systems via modulation transfer function (MTF) measurements

机译:通过调制传递函数(MTF)测量来表征差分相衬CT系统的空间分辨率

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摘要

By adding a Talbot-Lau interferometer to a conventional x-ray absorption computed tomography (CT) imaging system, both differential phase contrast (DPC) signal and absorption contrast signal can be simultaneously measured from the same set of CT measurements. The imaging performance of such multi-contrast x-ray CT imaging systems can be characterized with standard metrics such as noise variance, noise power spectrum, contrast-to-noise ratio, modulation transfer function (MTF), and task-based detectability index. Among these metrics, the measurement of the MTF can be challenging in DPC-CT systems due to several confounding factors such as phase wrapping and the difficulty of using fine wires as probes. To address these technical challenges, this paper discusses a viable and reliable method to experimentally measure the MTF of DPC-CT. It has been found that the spatial resolution of DPC-CT is degraded, when compared to that of the corresponding absorption CT, due to the presence of a source grating G0 in the Talbot-Lau interferometer. An effective MTF was introduced and experimentally estimated to describe the impact of the Talbot-Lau interferometer on the system MTF.
机译:通过将Talbot-Lau干涉仪添加到传统的X射线吸收计算机断层扫描(CT)成像系统中,可以从同一组CT测量中同时测量差分相位对比(DPC)信号和吸收对比信号。此类多对比度X射线CT成像系统的成像性能可以通过标准度量来表征,例如噪声方差,噪声功率谱,对比度与噪声比,调制传递函数(MTF)和基于任务的可检测性指标。在这些指标中,由于一些混淆因素(例如相位缠绕)和使用细线作为探针的困难,在DPC-CT系统中对MTF的测量可能具有挑战性。为了解决这些技术挑战,本文讨论了一种可行且可靠的方法,以实验方式测量DPC-CT的MTF。已经发现,与相应的吸收CT的空间分辨率相比,由于Talbot-Lau干涉仪中存在源光栅G0,DPC-CT的空间分辨率降低了。引入了有效的MTF并进行了实验估算,以描述Talbot-Lau干涉仪对系统MTF的影响。

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