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培养箱内3D打印显微镜:用于在组织培养箱内进行长期活细胞成像

The incubot: A 3D printer-based microscope for long-term live cell imaging within a tissue culture incubator.

作者信息

Merces George O T, Kennedy Conor, Lenoci Blanca, Reynaud Emmanuel G, Burke Niamh, Pickering Mark

机构信息

School of Medicine, University College Dublin, Co. Dublin, D04 V1W8, Ireland.

UCD Centre for Biomedical Engineering, University College Dublin, Co. Dublin, D04 V1W8, Ireland.

出版信息

HardwareX. 2021 Mar 10;9:e00189. doi: 10.1016/j.ohx.2021.e00189. eCollection 2021 Apr.

Abstract

Commercial live cell imaging systems represent a large financial burden to research groups, while current open source incubator microscopy systems lack adaptability and are sometimes inadequate for complex imaging experimentation. We present here a low-cost microscope designed for inclusion within a conventional tissue culture incubator. The build is constructed using an entry level 3D printer as the basis for the motion control system, with Raspberry Pi imaging and software integration, allowing for reflected, oblique, and fluorescence imaging of live cell monolayers. The open source nature of the design is aimed to facilitate adaptation by both the community at large and by individual researchers/groups. The development of an adaptable and easy-to-use graphic user interface (GUI) allows for the scientist to be at the core of experimental design through simple modifications of the base GUI code, or generation of an entirely purpose-built script. This adaptability will allow scientists to adapt this equipment for their experimental needs, as opposed to designing experiments to fit their current equipment. The build can be constructed for a cost of roughly €1000 and thus serves as a low-cost and adaptable addition to the open source microscopy community.

摘要

商业活细胞成像系统对研究团队来说是一项巨大的财务负担,而目前的开源培养箱显微镜系统缺乏适应性,有时无法满足复杂的成像实验需求。我们在此展示一种专为纳入传统组织培养箱而设计的低成本显微镜。该装置以入门级3D打印机为运动控制系统的基础构建而成,集成了树莓派成像和软件,可对活细胞单层进行反射、斜射和荧光成像。该设计的开源性质旨在便于广大社区以及个别研究人员/团队进行改造。一个适应性强且易于使用的图形用户界面(GUI)的开发,使科学家能够通过对基础GUI代码进行简单修改或生成完全定制的脚本,成为实验设计的核心。这种适应性将使科学家能够根据自己的实验需求对该设备进行改造,而不是设计实验来适应他们现有的设备。该装置的构建成本约为1000欧元,因此可作为开源显微镜社区低成本且适应性强的补充设备。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e307/9041206/be3a423ad1db/ga1.jpg

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