首页> 外文会议>Conference on physics of medical imaging >Effect of object size, position, and detector pixel size on X-ray absorption, differential phase-contrast and dark-field signal
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Effect of object size, position, and detector pixel size on X-ray absorption, differential phase-contrast and dark-field signal

机译:物体尺寸,位置和探测器像素尺寸对X射线吸收,差分相衬和暗场信号的影响

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X-ray phase-contrast and dark-field imaging are two new modalities that have great potential for applications in different fields like medical diagnostics or materials science. The use of grating interferometers allows the detection of both differential phase shift and dark-field signal together with the absorption signal in a single acquisition. We present wave-optical simulations to quantitatively analyze the response of a grating-based X-ray phase-contrast and dark-field imaging setup to variations of the sample relative to the system. Specifically, we investigated changes in the size and the position of the object. Furthermore, we examined the influence of different detector pixel sizes while sample and interferometer remained unchanged. The results of this study contribute to a better understanding of the signal formation and represent a step towards the full characterization of the response of grating interferometry setups to specific sample geometries.
机译:X射线相衬成像和暗场成像是两种新形式,在医学诊断或材料科学等不同领域具有巨大的应用潜力。光栅干涉仪的使用允许在单次采集中同时检测差分相移和暗场信号以及吸收信号。我们提出了波光学模拟,以定量分析基于光栅的X射线相衬和暗场成像设置对样品相对于系统变化的响应。具体来说,我们研究了对象大小和位置的变化。此外,我们在样品和干涉仪保持不变的情况下检查了不同检测器像素尺寸的影响。这项研究的结果有助于更好地理解信号的形成,并朝着全面表征光栅干涉测量装置对特定样品几何形状的响应迈出了一步。

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