>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'/> Dual light‐emitting diode‐based multichannel microscopy for whole‐slide multiplane, multispectral and phase imaging
首页> 外文期刊>Journal of Biophotonics >Dual light‐emitting diode‐based multichannel microscopy for whole‐slide multiplane, multispectral and phase imaging
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Dual light‐emitting diode‐based multichannel microscopy for whole‐slide multiplane, multispectral and phase imaging

机译:基于双发光二极管的多通道显微镜,用于全滑动倍增,多光谱和相位成像

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摘要

>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.
机译: >我们报告了全载乘法,多光谱和相位成像的多通道显微镜的开发。我们使用三眼头将光束路径分成6个独立通道,并采用相机阵列进行并行数据采集,实现每秒大约1个千兆像素的最大数据吞吐量。为了执行单帧快速自动聚焦,我们将2个近红外发光二极管(LED)放置在冷凝器透镜的后焦平面,以照亮来自2个不同的入射角的样品。热镜用于将近红外光引导到自动聚焦摄像机。对于多平面全幻灯片成像(WSI),我们同时获取厚标本的6个不同的焦平面。对于多光谱WSI,我们将6个独立图像平面中继到相同的焦点位置,并在6个光谱频带同时获取信息。对于整个幻灯片相成像,我们同时在3个焦点位置获取图像,并使用强度传输方程来恢复相位信息。我们还提供开源设计,以进一步增加6到15的通道数。报告的平台为多路复用荧光成像和多模式WSI提供了一种简单的解决方案。在没有Z扫描的情况下获取瞬间焦点堆栈也可以实现各种生物样本的快速三维动态跟踪。

著录项

  • 来源
    《Journal of Biophotonics》 |2018年第2期|共9页
  • 作者单位

    Department of Biomedical EngineeringUniversity of ConnecticutStorrs Connecticut;

    Department of Biomedical EngineeringUniversity of ConnecticutStorrs Connecticut;

    Department of Biomedical EngineeringUniversity of ConnecticutStorrs Connecticut;

    Department of Biomedical EngineeringUniversity of ConnecticutStorrs Connecticut;

    Department of Biomedical EngineeringUniversity of ConnecticutStorrs Connecticut;

    Department of Biomedical EngineeringUniversity of ConnecticutStorrs Connecticut;

    Department of Biomedical EngineeringUniversity of ConnecticutStorrs Connecticut;

    Department of Biomedical EngineeringUniversity of ConnecticutStorrs Connecticut;

    Department of Optoelectronic EngineeringJinan UniversityGuangzhou China;

    Department of Radiology &

    Biomedical Imaging Biomedical Engineering Applied Physics and PediatricsYale UniversityNew Haven Connecticut;

    Department of Biomedical EngineeringUniversity of ConnecticutStorrs Connecticut;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物物理学;
  • 关键词

    autofocusing; multiplane imaging; multispectral imaging; transport of intensity; whole‐slide imaging;

    机译:自动聚焦;乘法成像;多光谱成像;强度运输;全幻灯片成像;
  • 入库时间 2022-08-20 08:55:08

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