Nikitin Viktor, Tekawade Aniket, Duchkov Anton, Shevchenko Pavel, De Carlo Francesco
Advanced Photon Source, Argonne National Laboratory, Lemont, IL 60439, USA.
Data Science and Learning Division, Argonne National Laboratory, Lemont, IL 60439, USA.
J Synchrotron Radiat. 2022 May 1;29(Pt 3):816-828. doi: 10.1107/S1600577522003095. Epub 2022 Apr 20.
Complex dynamic tomographic experiments at brilliant X-ray light sources require real-time feedback on the sample changes with respect to environmental conditions, selecting representative regions of interest for high-resolution scanning, and on-demand data saving mechanisms for storing only relevant projections acquired by fast area detectors and reducing data volumes. Here the implementation details of a 3D real-time imaging monitoring instrument, with zooming to a volume of interest with easy-to-use visualization via ImageJ, a tool familiar to most beamline users, is presented. The instrument relies on optimized data flow between the detector and processing machines and is implemented on commodity computers. The instrument has been developed at beamline 2-BM of the Advanced Photon Source, where the automatic lens changing mechanism for zooming is implemented with an Optique Peter microscope. Performance tests demonstrate the ability to process more than 3 GB of projection data per second and generate real-time 3D zooming with different magnification. These new capabilities are essential for new APS Upgrade instruments such as the projection microscope under development at beamline 32-ID. The efficacy of the proposed instrument was demonstrated during an in situ tomographic experiment on ice and gas hydrate formation in porous samples.
在高亮度X射线光源下进行复杂的动态断层扫描实验,需要对样品相对于环境条件的变化进行实时反馈,选择感兴趣的代表性区域进行高分辨率扫描,并具备按需数据保存机制,以便仅存储由快速面积探测器获取的相关投影数据并减少数据量。本文介绍了一种三维实时成像监测仪器的实现细节,该仪器可通过大多数束线用户熟悉的工具ImageJ轻松实现可视化,将感兴趣的体积放大。该仪器依赖于探测器和处理机之间的优化数据流,并在商用计算机上实现。该仪器是在先进光子源的2-BM束线开发的,在那里,用于放大的自动镜头更换机构是用Optique Peter显微镜实现的。性能测试表明,该仪器能够每秒处理超过3GB的投影数据,并能以不同的放大倍数生成实时三维缩放。这些新功能对于新的APS升级仪器(如正在32-ID束线开发的投影显微镜)至关重要。在对多孔样品中冰和天然气水合物形成的原位断层扫描实验中,证明了所提出仪器的有效性。