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A LC-MS integration approach in life science automation: Hardware integration and software integration

机译:生命科学自动化中的LC-MS集成方法:硬件集成和软件集成

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Robots are widely used in life science automation due to their advantages, such as reducing manpower, ensuring uniformity and eliminating contaminations. Single-arm robots, with multiple degrees of freedom, have been used to transport labware, e.g. transporting microplates. Nowadays dual-arm robots draw much attraction due to their flexibility, but their applications in life sciences are still limited. In this case, a platform based on a Yaskawa CSDA10F dual-arm robot has been realized in the Center for Life Science Automation (celisca), Germany. In this platform, the robot is not only used to prepare samples by using labware, including pipettes, glass vials, microplates, thermoshaker and so on, in a human-like way, but also employed to integrate a liquid chromatography-mass spectrometry instrument (LC-MS) to the platform for sample analysis purposes. In order to enhance the degree of automation, the analysis process needs to be started automatically after the prepared samples are fed to the LC-MS. This was achieved by integrating the software system of the LC-MS to the SAMI Workstation EX Software system (SAMI EX, Beckman Coulter Inc.), which is user friendly and used for process scheduling. The integration was realized based on the user interface and eXtensible Markup Language (XML). The LC-MS can be controlled by imitating the signals of mouse events and keystrokes to the user interface (such as starting or stopping analysis process); XML data is used for detailed control information.
机译:机器人由于具有诸如减少人力,确保均匀性和消除污染等优点而被广泛用于生命科学自动化中。具有多个自由度的单臂机器人已用于运输实验室器具,例如运输微孔板。如今,双臂机器人由于其灵活性而吸引了很多人的注意,但是它们在生命科学中的应用仍然受到限制。在这种情况下,基于Yaskawa CSDA10F双臂机器人的平台已在德国生命科学自动化中心(celisca)中实现。在该平台上,该机器人不仅可以以类似于人的方式通过使用实验室器具来准备样品,包括移液器,玻璃小瓶,微孔板,摇瓶等,还可以用于集成液相色谱-质谱仪( LC-MS)到平台进行样品分析。为了提高自动化程度,需要在将准备好的样品送入LC-MS后自动开始分析过程。这是通过将LC-MS的软件系统集成到SAMI Workstation EX软件系统(SAMI EX,Beckman Coulter Inc.)而实现的,该系统用户友好,可用于过程调度。集成是基于用户界面和可扩展标记语言(XML)实现的。可以通过将鼠标事件和击键的信号模拟到用户界面(例如开始或停止分析过程)来控制LC-MS。 XML数据用于详细的控制信息。

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