Oscarsson Marcus, Beteva Antonia, Flot David, Gordon Elspeth, Guijarro Matias, Leonard Gordon, McSweeney Sean, Monaco Stephanie, Mueller-Dieckmann Christoph, Nanao Max, Nurizzo Didier, Popov Alexander N, von Stetten David, Svensson Olof, Rey-Bakaikoa Vicente, Chado Idrissou, Chavas Leonard M G, Gadea Laurent, Gourhant Patrick, Isabet Tatiana, Legrand Pierre, Savko Martin, Sirigu Serena, Shepard William, Thompson Andrew, Mueller Uwe, Nan Jie, Eguiraun Mikel, Bolmsten Fredrick, Nardella Alberto, Milàn-Otero Antonio, Thunnissen Marjolein, Hellmig Michael, Kastner Alexandra, Schmuckermaier Lukas, Gerlach Martin, Feiler Christian, Weiss Manfred S, Bowler Matthew W, Gobbo Alexandre, Papp Gergely, Sinoir Jeremy, McCarthy Andrew A, Karpics Ivars, Nikolova Marina, Bourenkov Gleb, Schneider Thomas, Andreu Jordi, Cuní Guifré, Juanhuix Judith, Boer Roeland, Fogh Rasmus, Keller Peter, Flensburg Claus, Paciorek Wlodek, Vonrhein Clemens, Bricogne Gerard, de Sanctis Daniele
ESRF - The European Synchrotron, 71 Avenue des Martyrs, 38000 Grenoble, France.
TXO Pedro de Alejandria 2-2C Pamplona, Spain.
J Synchrotron Radiat. 2019 Mar 1;26(Pt 2):393-405. doi: 10.1107/S1600577519001267. Epub 2019 Feb 22.
MXCuBE2 is the second-generation evolution of the MXCuBE beamline control software, initially developed and used at ESRF - the European Synchrotron. MXCuBE2 extends, in an intuitive graphical user interface (GUI), the functionalities and data collection methods available to users while keeping all previously available features and allowing for the straightforward incorporation of ongoing and future developments. MXCuBE2 introduces an extended abstraction layer that allows easy interfacing of any kind of macromolecular crystallography (MX) hardware component, whether this is a diffractometer, sample changer, detector or optical element. MXCuBE2 also works in strong synergy with the ISPyB Laboratory Information Management System, accessing the list of samples available for a particular experimental session and associating, either from instructions contained in ISPyB or from user input via the MXCuBE2 GUI, different data collection types to them. The development of MXCuBE2 forms the core of a fruitful collaboration which brings together several European synchrotrons and a software development factory and, as such, defines a new paradigm for the development of beamline control platforms for the European MX user community.
MXCuBE2是MXCuBE光束线控制软件的第二代升级版,最初由欧洲同步辐射装置(ESRF)开发并使用。MXCuBE2通过直观的图形用户界面(GUI)扩展了用户可用的功能和数据收集方法,同时保留了所有先前可用的功能,并允许直接纳入正在进行和未来的开发成果。MXCuBE2引入了一个扩展的抽象层,可轻松连接任何类型的大分子晶体学(MX)硬件组件,无论是衍射仪、样品更换器、探测器还是光学元件。MXCuBE2还与ISPyB实验室信息管理系统紧密协作,获取特定实验会话可用的样品列表,并根据ISPyB中包含的指令或通过MXCuBE2 GUI的用户输入,将不同的数据收集类型与这些样品相关联。MXCuBE2的开发构成了一项卓有成效的合作的核心,该合作汇聚了多个欧洲同步加速器和一个软件开发工厂,因此为欧洲MX用户社区的光束线控制平台开发定义了一种新的模式。