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Automated microbeam observation environment for biological analysis-Custom portable environmental control applied to a vertical microbeam system

机译:用于生物分析的自动化微束观察环境-应用于垂直微束系统的定制便携式环境控制

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摘要

Vertical Microbeams (VMB) are used to irradiate individual cells with low MeV energy ions. The irradiation of cells using VMBs requires cells to be removed from an incubator; this can cause physiological changes to cells because of the lower CO_2 concentration, temperature and relative humidity outside of the incubator. Consequently, for experiments where cells require irradiation and observation for extended time periods, it is important to provide a controlled environment. The highly customised nature of the microscopes used on VMB systems means that there are no commercially available environmentally controlled microscope systems for VMB systems. The Automated Microbeam Observation Environment for Biological Analysis (AMOEBA) is a highly flexible modular environmental control system used to create incubator conditions on the end of a VMB. The AMOEBA takes advantage of the recent "maker" movement to create an open source control system that can be easily configured by the user to fit their control needs even beyond VMB applications. When applied to the task of controlling cell medium temperature, CO_2 concentration and relative humidity on VMBs it creates a stable environment that allows cells to multiply on the end of a VMB over a period of 36h, providing a low-cost (costing less than $2700 to build), customisable alternative to commercial time-lapse microscopy systems. AMOEBA adds the potential of VMBs to explore the long-term effects of radiation on single cells opening up new research areas for VMBs.
机译:垂直微束(VMB)用于以低MeV能量离子照射单个细胞。使用VMB辐照细胞需要将细胞从培养箱中移出。这可能会导致细胞发生生理变化,因为孵化器外部的CO_2浓度,温度和相对湿度较低。因此,对于需要长时间照射和观察细胞的实验,提供受控的环境非常重要。 VMB系统上使用的显微镜​​具有高度定制的性质,这意味着没有用于VMB系统的商业环境控制显微镜系统。自动化的生物分析微束观察环境(AMOEBA)是一种高度灵活的模块化环境控制系统,用于在VMB的末端创建培养箱条件。 AMOEBA利用最近的“制造商”运动创建了一个开源控制系统,用户可以轻松配置它以适应其控制需求,甚至超出VMB应用程序。当应用于控制VMB上的细胞培养基温度,CO_2浓度和相对湿度的任务时,它创建了一个稳定的环境,允许细胞在VMB的末端持续36h繁殖,从而提供了低成本(成本低于2700美元)建立),可定制的替代商业延时显微镜系统。 AMOEBA增加了VMB的潜力,以探索辐射对单细胞的长期影响,从而为VMB开辟了新的研究领域。

著录项

  • 来源
    《Sensors and Actuators》 |2017年第2期|1134-1143|共10页
  • 作者单位

    Ion Beam Centre, University of Surrey, Guildford, Surrey GU2 7XH, United Kingdom;

    Center for Radiological Research, Columbia University, 630 West 168th Street, New York, NY, USA;

    Christie NHS Foundation Trust, Manchester, United Kingdom,University of Manchester, Institute of Cancer Sciences-Manchester Academic Health Science Centre, Manchester, United Kingdom;

    Bioprocess and Biochemical Engineering Croup (BioProChem), Department of Chemical and Process Engineering, University of Surrey, United Kingdom;

    Center for Radiological Research, Columbia University, 630 West 168th Street, New York, NY, USA;

    Center for Radiological Research, Columbia University, 630 West 168th Street, New York, NY, USA;

    Christie NHS Foundation Trust, Manchester, United Kingdom,University of Manchester, Institute of Cancer Sciences-Manchester Academic Health Science Centre, Manchester, United Kingdom;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Microbeam; Time-lapse microscopy; Environmental control; Arduino; 3D printing;

    机译:微束;延时显微镜环境控制;Arduino的;3D打印;

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