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带有随机微透镜漫射器的片上荧光显微镜。

On-chip fluorescence microscopy with a random microlens diffuser.

作者信息

Kuo Grace, Linda Liu Fanglin, Grossrubatscher Irene, Ng Ren, Waller Laura

出版信息

Opt Express. 2020 Mar 16;28(6):8384-8399. doi: 10.1364/OE.382055.

Abstract

We present an on-chip, widefield fluorescence microscope, which consists of a diffuser placed a few millimeters away from a traditional image sensor. The diffuser replaces the optics of a microscope, resulting in a compact and easy-to-assemble system with a practical working distance of over 1.5 mm. Furthermore, the diffuser encodes volumetric information, enabling refocusability in post-processing and three-dimensional (3D) imaging of sparse samples from a single acquisition. Reconstruction of images from the raw data requires a precise model of the system, so we introduce a practical calibration scheme and a physics-based forward model to efficiently account for the spatially-varying point spread function (PSF). To improve performance in low-light, we propose a random microlens diffuser, which consists of many small lenslets randomly placed on the mask surface and yields PSFs that are robust to noise. We build an experimental prototype and demonstrate our system on both planar and 3D samples.

摘要

我们展示了一种片上宽场荧光显微镜,它由一个距离传统图像传感器几毫米远的漫射器组成。该漫射器取代了显微镜的光学器件,从而形成了一个紧凑且易于组装的系统,其实际工作距离超过1.5毫米。此外,漫射器对体积信息进行编码,使得在处理后能够重新聚焦,并能从单次采集对稀疏样本进行三维(3D)成像。从原始数据重建图像需要精确的系统模型,因此我们引入了一种实用的校准方案和基于物理的前向模型,以有效地考虑空间变化的点扩散函数(PSF)。为了在低光条件下提高性能,我们提出了一种随机微透镜漫射器,它由许多随机放置在掩模表面的小透镜组成,产生对噪声具有鲁棒性的PSF。我们构建了一个实验原型,并在平面和3D样本上展示了我们的系统。

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