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Snapshot full-volume coded aperture X-ray diffraction tomography

机译:快照全体积编码孔径X射线衍射层析成像

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X-ray diffraction tomography (XRDT) is a well-established technique that makes it possible to identify the material composition of an object throughout its volume. We show that using coded apertures to structure the measured scatter signal gives rise to a family of imaging architectures than enables snapshot XRDT in up to 4-dimensions. We consider pencil, fan, and cone beam snapshot XRDT and show results from both experimental and simulation-based studies. We find that, while lower-dimensional systems typically result in higher imaging fidelity, higher-dimensional systems can perform adequately for a specific task at orders of magnitude faster scan times.
机译:X射线衍射断层扫描(XRDT)是一项行之有效的技术,可以识别整个物体的材料成分。我们展示了使用编码孔径来构造测得的散射信号会产生一系列成像体系结构,而不是使快照XRDT的分辨率提高到4维。我们考虑了笔形,扇形和锥形束快照XRDT,并显示了基于实验和基于仿真的研究的结果。我们发现,虽然低维系统通常会导致更高的成像保真度,但高维系统可以以更快的扫描时间数量级完成特定任务。

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