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The Gray Institute 'open' high-content, fluorescence lifetime microscopes.

机译:灰色研究所“开放式”高含量荧光寿命显微镜。

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摘要

We describe a microscopy design methodology and details of microscopes built to this 'open' design approach. These demonstrate the first implementation of time-domain fluorescence microscopy in a flexible automated platform with the ability to ease the transition of this and other advanced microscopy techniques from development to use in routine biology applications. This approach allows easy expansion and modification of the platform capabilities, as it moves away from the use of a commercial, monolithic, microscope body to small, commercial off-the-shelf and custom made modular components. Drawings and diagrams of our microscopes have been made available under an open license for noncommercial use at http://users.ox.ac.uk/~atdgroup. Several automated high-content fluorescence microscope implementations have been constructed with this design framework and optimized for specific applications with multiwell plates and tissue microarrays. In particular, three platforms incorporate time-domain FLIM via time-correlated single photon counting in an automated fashion. We also present data from experiments performed on these platforms highlighting their automated wide-field and laser scanning capabilities designed for high-content microscopy. Devices using these designs also form radiation-beam 'end-stations' at Oxford and Surrey Universities, showing the versatility and extendibility of this approach.
机译:我们描述了一种显微镜设计方法,以及为这种“开放式”设计方法构建的显微镜的详细信息。这些证明了时域荧光显微镜技术在灵活的自动化平台中的首次实现,并具有缓解这种和其他先进显微镜技术从开发到常规生物学应用的过渡的能力。这种方法可以轻松扩展和修改平台功能,因为它不再使用商用的整体显微镜主体,而是使用小型的商用现成和定制模块组件。我们的显微镜的图形和图表已在非商业用途的开放许可下提供,网址为http://users.ox.ac.uk/~atdgroup。利用该设计框架构建了几种自动化的高含量荧光显微镜实施方案,并针对多孔板和组织微阵列的特定应用进行了优化。特别是,三个平台通过与时间相关的单光子计数以自动方式合并了时域FLIM。我们还提供了在这些平台上进行的实验数据,重点介绍了为高含量显微镜设计的自动宽视野和激光扫描功能。使用这些设计的设备还在牛津大学和萨里大学形成了辐射束“终端站”,显示了这种方法的多功能性和可扩展性。

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