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JBluIce–EPICS control system for macromolecular crystallography

机译:JBluIce–EPICS大分子晶体学控制系统

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摘要

The trio of macromolecular crystallography beamlines constructed by the General Medicine and Cancer Institutes Collaborative Access Team (GM/CA-CAT) in Sector 23 of the Advanced Photon Source (APS) have been in growing demand owing to their outstanding beam quality and capacity to measure data from crystals of only a few micrometres in size. To take full advantage of the state-of-the-art mechanical and optical design of these beamlines, a significant effort has been devoted to designing fast, convenient, intuitive and robust beamline controls that could easily accommodate new beamline developments. The GM/CA-CAT beamline controls are based on the power of EPICS for distributed hardware control, the rich Java graphical user interface of Eclipse RCP and the task-oriented philosophy as well as the look and feel of the successful SSRL BluIce graphical user interface for crystallography. These beamline controls feature a minimum number of software layers, the wide use of plug-ins that can be written in any language and unified motion controls that allow on-the-fly scanning and optimization of any beamline com­ponent. This paper describes the ways in which BluIce was combined with EPICS and converted into the Java-based JBluIce, discusses the solutions aimed at streamlining and speeding up operations and gives an overview of the tools that are provided by this new open-source control system for facilitating crystallo­graphic experiments, especially in the field of microcrystallo­graphy.
机译:由普通医学和癌症研究所协作访问小组(GM / CA-CAT)在先进光子源(APS)第23区建造的三分子大分子晶体束线由于其出色的束质量和测量能力而变得越来越需求来自仅几微米大小的晶体的数据。为了充分利用这些光束线的最新机械和光学设计,已投入大量精力来设计快速,方便,直观和强大的光束线控件,这些控件可以轻松适应新的光束线的发展。 GM / CA-CAT光束线控件基于EPICS的强大功能,可进行分布式硬件控制,Eclipse RCP丰富的Java图形用户界面,面向任务的理念以及成功的SSRL BluIce图形用户界面的外观用于晶体学。这些束线控件具有最少的软件层数,可以以任何语言编写的插件的广泛使用以及统一的运动控件,这些控件可以实时扫描和优化任何束线组件。本文介绍了BluIce与EPICS组合并转换为基于Java的JBluIce的方式,讨论了旨在简化和加速操作的解决方案,并概述了此新的开源控制系统为以下工具提供的工具:促进晶体学实验,特别是在微晶体学领域。

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