Biosciences Division, Argonne National Laboratory, Argonne, IL 60439, USA.
J Synchrotron Radiat. 2011 Sep;18(Pt 5):717-22. doi: 10.1107/S0909049511029918. Epub 2011 Jul 29.
Automated scanning capabilities have been added to the data acquisition software, JBluIce-EPICS, at the National Institute of General Medical Sciences and the National Cancer Institute Collaborative Access Team (GM/CA CAT) at the Advanced Photon Source. A raster' feature enables sample centering via diffraction scanning over two-dimensional grids of simple rectangular or complex polygonal shape. The feature is used to locate crystals that are optically invisible owing to their small size or are visually obfuscated owing to properties of the sample mount. The raster feature is also used to identify the best-diffracting regions of large inhomogeneous crystals. Low-dose diffraction images taken at grid positions are automatically processed in real time to provide a quick quality ranking of potential data-collection sites. A vector collect' feature mitigates the effects of radiation damage by scanning the sample along a user-defined three-dimensional vector during data collection to maximize the use of the crystal volume and the quality of the collected data. These features are integrated into the JBluIce-EPICS data acquisition software developed at GM/CA CAT where they are used in combination with a robust mini-beam of rapidly changeable diameter from 5 µm to 20 µm. The powerful software-hardware combination is being applied to challenging problems in structural biology.
自动化扫描功能已被添加到数据采集软件 JBluIce-EPICS 中,该软件由国立卫生研究院(National Institute of General Medical Sciences)和高级光子源国立癌症研究院协作访问团队(National Cancer Institute Collaborative Access Team,GM/CA CAT)共同开发。光栅(raster)功能可通过在简单矩形或复杂多边形二维网格上进行衍射扫描来实现样品中心定位。该功能用于定位因尺寸过小而在光学上不可见或因样品安装特性而在视觉上模糊的晶体。光栅功能还用于识别大的不均匀晶体的最佳衍射区域。在网格位置采集的低剂量衍射图像可实时自动处理,以快速对潜在数据采集点进行质量排名。向量采集(vector collect)功能通过在数据采集过程中沿用户定义的三维向量扫描样品来减轻辐射损伤的影响,以最大限度地利用晶体体积和收集数据的质量。这些功能已集成到 GM/CA CAT 开发的 JBluIce-EPICS 数据采集软件中,并与直径可在 5 μm 至 20 μm 之间快速变化的强大微型光束相结合使用。强大的软件-硬件组合正在应用于结构生物学中的挑战性问题。