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Grating-based spectral X-ray dark-field imaging for correlation with structural size measures

机译:基于光栅的光谱X射线暗场成像,用于与结构尺寸措施相关性

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X-ray dark-field (XDF) imaging accesses information on the small-angle scattering properties of the sample. With grating interferometry, the measured scattering signal is related to the sample’s autocorrelation function, which was previously demonstrated for simple samples, such as mono-dispersed microspheres for which the autocorrelation function is mathematically given. However, in potential clinical applications of XDF imaging, complex microstructures, such as lung parenchyma are under investigation. Their bahaviour in XDF imaging is not yet known and no mathematical description of the autocorrelation function is derived so far. In this work we demonstrate the previously established correlation of the XDF data of complex sample structures with their autocorrelation function to be impractical. Furthermore, we propose an applicable correlation between XDF and the sample’s structural parameter on the basis of mean chord length, a medically-approved measure for alveolar structure, known to be affected by structural lung diseases. Our findings reveal a correlation between energy-dependent XDF imaging and the sample’s mean chord length. By that, a connection between a medical measure for alveoli and XDF is achieved, which is particularly important regarding potential future XDF lung imaging applications for the assessment of alveoli size in diagnostic lung imaging.
机译:X射线暗场(XDF)成像访问样品的小角度散射特性的信息。利用光栅干涉测量法,测量的散射信号与样品的自相关函数有关,以前用于简单的样品,例如单分散的微球在数学上给出自相关函数的单分散微球。然而,在XDF成像的潜在临床应用中,正在调查复杂的微观结构,例如肺实质。他们的XDF成像中的Bahaviour尚未知道,到目前为止,没有销售自相关函数的数学描述。在这项工作中,我们展示了以前建立了复杂样本结构的XDF数据与其自相关函数是不切实际的。此外,我们在平均弦长的基础上提出了XDF和样品结构参数之间的适用相关性,一种医学批准的肺泡结构的测量,已知受结构肺病的影响。我们的研究结果揭示了能量依赖性XDF成像与样本的平均和弦长度之间的相关性。由此,实现了肺泡和XDF的医学措施之间的联系,这对于潜在的未来XDF肺成像应用特别重要,用于评估诊断肺成像中的肺泡大小。

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