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An X-ray microsource based system for crystal screening and beamline development during synchrotron shutdown periods

机译:基于X射线微源的系统用于同步加速器关闭期间的晶体筛选和束线显影

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摘要

Crystallographic end-stations require a significant investment in state-of-the-art equipment, as well as a significant effort in software development. The equipment often sits idle during annual maintenance shutdowns. In order to utilize the existing hardware and software during these shutdowns, we installed a sealed-tube microsource X-ray generator in the beamline 9-2 hutch at Stanford Synchrotron Radiation Laboratory. A multi-layer optic provides good flux and spectral purity. The small physical size of the source, the long optic to focus distance (635 mm) and the short source to optic distance (65 mm) allowed the use of existing beamline components, without any significant modification. The system replaces a short section of beam pipe upstream of the beam conditioning slits and shutter. The system can be installed and removed from the beamline in less than 1 day.The Joint Center for Structural Genomics (JCSG) and SSRL Structural Molecular Biology group developed the Stanford Automated Mounting (SAM) system and installed it on beamlines at SSRL. The JCSG relies on this system to test crystals for diffraction. The installation of the X-ray microsource in beamline 9-2 allowed crystal screening to continue during SSRL shutdowns. Using a standard screening protocol of two 10 minute exposures, separated by a 90° phi rotation, the system was capable of screening up to 400 crystals per week and was left to run unattended for up to 4 days. Over 8200 crystals were screened during the last four SSRL shutdown periods.An X-ray generator can also be useful for ongoing beamline development. Shutdown periods provide easier access to the experimental hardware, however, some tests require beam. The X-ray microsource offers the ability to conduct these tests during periods when users are not scheduled.
机译:晶体学终端站需要对最先进的设备进行大量投资,并且需要在软件开发方面进行大量工作。在年度维护停机期间,设备通常处于闲置状态。为了在这些关闭期间利用现有的硬件和软件,我们在斯坦福同步辐射实验室的9-2号射束箱中安装了密封管微源X射线发生器。多层光学器件可提供良好的通量和光谱纯度。光源的物理尺寸小,光学元件到聚焦距离长(635毫米)和光学元件到光学距离短(65毫米),允许使用现有的光束线组件,而无需进行任何重大修改。该系统取代了光束调节狭缝和挡板上游的一小段光束管。该系统可以在不到1天的时间内从光束线上安装和拆卸。结构基因组学联合中心(JCSG)和SSRL结构分子生物学小组开发了斯坦福自动安装(SAM)系统,并将其安装在SSRL的光束线上。 JCSG依靠该系统测试晶体的衍射。在射线线9-2中安装X射线微源,可以在SSRL关闭期间继续进行晶体筛查。使用两次10分钟曝光的标准筛选规程(以90°phi旋转间隔),该系统每周能够筛选多达400个晶体,并且可以无人看管运行长达4天。在最后四个SSRL停机期间筛选了8200多个晶体。X射线发生器也可用于正在进行的光束线开发。关机期间使您更容易访问实验硬件,但是,某些测试需要光束。 X射线微源提供了在未安排用户的期间进行这些测试的功能。

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