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High-throughput real-time x-ray microtomography at the Advanced Photon Source

机译:高级光子源的高通量实时X射线显微镜图

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It is now possible for large volumes of synchrotron-radiation-generated micro-tomography data to be produced at gigabyte-per-minute rates, especially when using currently available CCD cameras at a high-brightness source, such as the Advanced Photon Source (APS). Recent improvements in the speed of our detectors and stages, combined with increased photon flux supplied by a newly installed double multilayer monochromator, allow us to achieve these data rates on a bending magnet beamline. Previously, most x-ray microtomography experiments have produced data at comparatively lower rates, and often the data were analyzed after the experiment. The time needed to generate complete data sets meant putting off analysis to the completion of a run, thus preventing the user from evaluating the usefulness of a data set and consequently impairing decision making during data acquisition as to how to proceed. Thus, the ability to provide to a tomography user a fully reconstructed data set in few minutes is one of the major problems to be solved when dealing with high-throughput x-ray tomography. This is due to the complexity of the data analysis that involves data preprocessing, sinogram generation, 3D reconstruction, and rendering. At the APS, we have developed systems and techniques to address this issue. We present a method that uses a cluster-based, parallel-computing system based on the Message Passing Interface (MPI) standard. Among the advantages of this approach are the portability, ease-of-use, and low cost of the system. The combination of high-speed, online analysis with high-throughput acquisition allows us to acquire and reconstruct a 512x512x512-voxel sample with a few microns resolution in less than ten minutes.
机译:现在可以用于大体积在千兆字节每分钟的速率生产,同步加速器辐射产生的微断层摄影数据中的高亮度源特别是使用目前可用的CCD摄像机的情况下,如先进光子源(APS )。最近的探测器和阶段的速度改进,与新安装的双层单色器提供的增加的光子通量相结合,使我们能够在弯曲磁束线上实现这些数据速率。以前,大多数X射线显微镜摄影实验在比较较低的速率下产生了数据,并且经常在实验后进行数据。生成完整数据集所需的时间意味着将分析放置到运行的完成,从而防止用户评估数据集的有用性,并因此在数据获取期间损害决策,如如何继续。因此,在几分钟内提供完全重建的数据设置的能力是在处理高吞吐量X射线断层扫描时要解决的主要问题之一。这是由于数据分析的复杂性,涉及数据预处理,Sinogram生成,3D重建和渲染。在APS,我们开发了解决此问题的系统和技术。我们介绍了一种方法,它使用基于群集的并行计算系统的基于消息传递接口(MPI)标准。这种方法的优点是系统的便携性,易用性和低成本。高速,在线分析与高通量采集的结合使我们能够获得和在不到十分钟重建有几微米分辨率512x512x512体素的样品。

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