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The ePetri dish, an on-chip cell imaging platform based on subpixel perspective sweeping microscopy (SPSM)

机译:ePetri皿,基于亚像素透视扫描显微镜(SPSM)的片上细胞成像平台

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摘要

We report a chip-scale lensless wide-field-of-view microscopy imaging technique, subpixel perspective sweeping microscopy, which can render microscopy images of growing or confluent cell cultures autonomously. We demonstrate that this technology can be used to build smart Petri dish platforms, termed ePetri, for cell culture experiments. This technique leverages the recent broad and cheap availability of high performance image sensor chips to provide a low-cost and automated microscopy solution. Unlike the two major classes of lensless microscopy methods, optofluidic microscopy and digital in-line holography microscopy, this new approach is fully capable of working with cell cultures or any samples in which cells may be contiguously connected. With our prototype, we demonstrate the ability to image samples of area 6 mm × 4 mm at 660-nm resolution. As a further demonstration, we showed that the method can be applied to image color stained cell culture sample and to image and track cell culture growth directly within an incubator. Finally, we showed that this method can track embryonic stem cell differentiations over the entire sensor surface. Smart Petri dish based on this technology can significantly streamline and improve cell culture experiments by cutting down on human labor and contamination risks.
机译:我们报告了一种芯片级无透镜广视角显微镜成像技术,亚像素透视扫描显微镜,它可以自动呈现生长或汇合的细胞培养的显微镜图像。我们证明了该技术可用于构建用于细胞培养实验的智能培养皿平台,称为ePetri。该技术利用了高性能图像传感器芯片的近期广泛且廉价的可获得性来提供低成本和自动化的显微镜解决方案。与两类主要的无透镜显微镜方法(光流体显微镜和数字在线全息显微镜)不同,这种新方法完全能够处理细胞培养物或任何可能连续连接细胞的样品。利用我们的原型,我们展示了以660 nm分辨率对6 mm×4 mm区域的样品成像的能力。作为进一步的演示,我们证明了该方法可用于对彩色染色的细胞培养样品进行成像,并直接在培养箱内成像和跟踪细胞培养的生长。最后,我们证明了该方法可以跟踪整个传感器表面上的胚胎干细胞分化。基于此技术的智能培养皿可通过减少人工劳动和污染风险,显着简化并改善细胞培养实验。

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