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芯片上的光片荧光显微镜自动对果蝇胚胎进行成像。

Automatic imaging of Drosophila embryos with light sheet fluorescence microscopy on chip.

机构信息

Dipartimento di Fisica, Politecnico di Milano, Piazza Leonardo da Vinci, Milan, Italy.

Istituto di Fotonica e Nanotecnologie (IFN)-CNR, Piazza Leonardo da Vinci, Milan, Italy.

出版信息

J Biophotonics. 2021 Mar;14(3):e202000396. doi: 10.1002/jbio.202000396. Epub 2020 Dec 16.

Abstract

We present a microscope on chip for automated imaging of Drosophila embryos by light sheet fluorescence microscopy. This integrated device, constituted by both optical and microfluidic components, allows the automatic acquisition of a 3D stack of images for specimens diluted in a liquid suspension. The device has been fully optimized to address the challenges related to the specimens under investigation. Indeed, the thickness and the high ellipticity of Drosophila embryos can degrade the image quality. In this regard, optical and fluidic optimization has been carried out to implement dual-sided illumination and automatic sample orientation. In addition, we highlight the dual color investigation capabilities of this device, by processing two sample populations encoding different fluorescent proteins. This work was made possible by the versatility of the used fabrication technique, femtosecond laser micromachining, which allows straightforward fabrication of both optical and fluidic components in glass substrates.

摘要

我们提出了一种芯片显微镜,用于通过光片荧光显微镜对果蝇胚胎进行自动成像。该集成设备由光学和微流控组件构成,允许对稀释在液体悬浮液中的标本自动采集 3D 图像堆栈。该设备已经过全面优化,以解决与研究标本相关的挑战。实际上,果蝇胚胎的厚度和高椭圆度会降低图像质量。在这方面,已经进行了光学和流体优化,以实现双面照明和自动样本定向。此外,我们通过处理两个编码不同荧光蛋白的样本群体来突出该设备的双色研究能力。这项工作得益于所使用的制造技术——飞秒激光微加工的多功能性,该技术允许在玻璃基板上直接制造光学和流体组件。

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