Gervasi Alain, Cardol Pierre, Meyer Patrick E
Genetics and Physiology of Microalgae, InBios/Phytosystems, Institut de Botanique, University of Liège, 4000 Liege, Belgium.
Bioinformatics and Systems Biology Lab, InBios/Phytosystems, Institut de Botanique, University of Liège, 4000 Liege, Belgium.
Micromachines (Basel). 2022 May 26;13(6):833. doi: 10.3390/mi13060833.
Bright field microscopes are particularly useful tools for biologists for cell and tissue observation, phenotyping, cell counting, and so on. Direct cell observation provides a wealth of information on cells' nature and physiological condition. Microscopic analyses are, however, time-consuming and usually not easy to parallelize. We describe the fabrication of a stand-alone microscope able to automatically collect samples with 3D printed pumps, and capture images at up to 50× optical magnification with a digital camera at a good throughput (up to 24 different samples can be collected and scanned in less than 10 min). Furthermore, the proposed device can store and analyze pictures using computer vision algorithms running on a low power integrated single board computer. Our device can perform a large set of tasks, with minimal human intervention, that no single commercially available machine can perform. The proposed open-hardware device has a modular design and can be freely reproduced at a very competitive price with the use of widely documented and user-friendly components such as Arduino, Raspberry pi, and 3D printers.
明场显微镜对于生物学家来说是用于细胞和组织观察、表型分析、细胞计数等的特别有用的工具。直接细胞观察能提供关于细胞性质和生理状况的丰富信息。然而,显微镜分析耗时且通常不易并行化。我们描述了一种独立显微镜的制造,它能够用3D打印泵自动采集样本,并使用数码相机以高达50倍的光学放大倍数、良好的通量(在不到10分钟内可采集和扫描多达24个不同样本)捕获图像。此外,所提出的设备可以使用在低功耗集成单板计算机上运行的计算机视觉算法存储和分析图片。我们的设备能够在最少人工干预的情况下执行大量任务,这是任何单一市售机器都无法做到的。所提出的开源硬件设备具有模块化设计,并且可以使用诸如Arduino、树莓派和3D打印机等文档丰富且用户友好的组件,以极具竞争力的价格自由复制。