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基于双发光二极管的多通道显微镜,用于全玻片多层面、多光谱和相差成像。

Dual light-emitting diode-based multichannel microscopy for whole-slide multiplane, multispectral and phase imaging.

机构信息

Department of Biomedical Engineering, University of Connecticut, Storrs, Connecticut.

Department of Optoelectronic Engineering, Jinan University, Guangzhou, China.

出版信息

J Biophotonics. 2018 Feb;11(2). doi: 10.1002/jbio.201700075. Epub 2017 Aug 7.

Abstract

We report the development of a multichannel microscopy for whole-slide multiplane, multispectral and phase imaging. We use trinocular heads to split the beam path into 6 independent channels and employ a camera array for parallel data acquisition, achieving a maximum data throughput of approximately 1 gigapixel per second. To perform single-frame rapid autofocusing, we place 2 near-infrared light-emitting diodes (LEDs) at the back focal plane of the condenser lens to illuminate the sample from 2 different incident angles. A hot mirror is used to direct the near-infrared light to an autofocusing camera. For multiplane whole-slide imaging (WSI), we acquire 6 different focal planes of a thick specimen simultaneously. For multispectral WSI, we relay the 6 independent image planes to the same focal position and simultaneously acquire information at 6 spectral bands. For whole-slide phase imaging, we acquire images at 3 focal positions simultaneously and use the transport-of-intensity equation to recover the phase information. We also provide an open-source design to further increase the number of channels from 6 to 15. The reported platform provides a simple solution for multiplexed fluorescence imaging and multimodal WSI. Acquiring an instant focal stack without z-scanning may also enable fast 3-dimensional dynamic tracking of various biological samples.

摘要

我们开发了一种用于全切片多平面、多光谱和相衬成像的多通道显微镜。我们使用三目头将光束路径分成 6 个独立的通道,并采用相机阵列进行并行数据采集,实现了大约每秒 10 亿像素的最大数据吞吐量。为了实现单帧快速自动对焦,我们在聚光镜的后焦平面上放置了 2 个近红外发光二极管(LED),从 2 个不同的入射角照亮样品。使用热反射镜将近红外光引导到自动对焦相机。对于多平面全切片成像(WSI),我们可以同时获取厚标本的 6 个不同焦平面。对于多光谱 WSI,我们将 6 个独立的图像平面中继到同一焦平面,并同时在 6 个光谱波段获取信息。对于全切片相衬成像,我们可以同时获取 3 个焦平面的图像,并使用强度传输方程来恢复相位信息。我们还提供了一个开源设计,可将通道数量从 6 个进一步增加到 15 个。所报道的平台为复用荧光成像和多模态 WSI 提供了一种简单的解决方案。无需 z 扫描即可获取即时的焦点堆栈,也可以实现各种生物样本的快速 3D 动态跟踪。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0df0/5766431/584894bedbd7/nihms895500f1.jpg

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