Time-lapse imaging is a powerful tool for studying cellular dynamics and cell behavior over long periods of time to acquire detailed functional information. However, commercially available time-lapse imaging systems are expensive and this has limited a broader implementation of this technique in low-resource environments. Further, the availability of time-lapse imaging systems often present workflow bottlenecks in well-funded institutions. To address these limitations we have designed a modular and affordable time-lapse imaging and incubation system (ATLIS). The ATLIS enables the transformation of simple inverted microscopes into live cell imaging systems using custom-designed 3D-printed parts, a smartphone, and off-the-shelf electronic components. We demonstrate that the ATLIS provides stable environmental conditions to support normal cell behavior during live imaging experiments in both traditional and evaporation-sensitive microfluidic cell culture systems. Thus, the system presented here has the potential to increase the accessibility of time-lapse microscopy of living cells for the wider research community.
A Modular and Affordable Time-Lapse Imaging and Incubation System Based on 3D-Printed Parts, a Smartphone, and Off-The-Shelf Electronics.
基于 3D 打印部件、智能手机和现成电子元件的模块化且价格实惠的延时成像和孵化系统
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作者:Hernández Vera Rodrigo, Schwan Emil, Fatsis-Kavalopoulos Nikos, Kreuger Johan
| 期刊: | PLoS One | 影响因子: | 2.600 |
| 时间: | 2016 | 起止号: | 2016 Dec 21; 11(12):e0167583 |
| doi: | 10.1371/journal.pone.0167583 | ||
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