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Fusion of lens-free microscopy and mobile-phone microscopy images for high-color-accuracy and high-resolution pathology imaging

机译:无透镜显微镜和手机显微镜图像的融合,可实现高色彩精度和高分辨率病理成像

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摘要

Digital pathology and telepathology require imaging tools with high-throughput, high-resolution and accurate color reproduction. Lens-free on-chip microscopy based on digital in-line holography is a promising technique towards these needs, as it offers a wide field of view (FOV >20 mm2) and high resolution with a compact, low-cost and portable setup. Color imaging has been previously demonstrated by combining reconstructed images at three discrete wavelengths in the red, green and blue parts of the visible spectrum, i.e., the RGB combination method. However, this RGB combination method is subject to color distortions. To improve the color performance of lens-free microscopy for pathology imaging, here we present a wavelet-based color fusion imaging framework, termed "digital color fusion microscopy" (DCFM), which digitally fuses together a grayscale lens-free microscope image taken at a single wavelength and a low-resolution and low-magnification color-calibrated image taken by a lens-based microscope, which can simply be a mobile phone based cost-effective microscope. We show that the imaging results of an H&E stained breast cancer tissue slide with the DCFM technique come very close to a color-calibrated microscope using a 40x objective lens with 0.75 NA. Quantitative comparison showed 2-fold reduction in the mean color distance using the DCFM method compared to the RGB combination method, while also preserving the high-resolution features of the lens-free microscope. Due to the cost-effective and field-portable nature of both lens-free and mobile-phone microscopy techniques, their combination through the DCFM framework could be useful for digital pathology and telepathology applications, in low-resource and point-of-care settings.
机译:数字病理学和远程病理学需要具有高通量,高分辨率和精确色彩再现的成像工具。基于数字在线全息技术的无透镜片上显微技术是满足这些需求的一项有前途的技术,因为它提供了宽视场(FOV> 20 mm2)和高分辨率,并且具有紧凑,低成本和便携式的设置。先前已经通过在可见光谱的红色,绿色和蓝色部分中的三个离散波长处组合重构图像来证明彩色成像,即RGB组合方法。但是,这种RGB组合方法会产生颜色失真。为了改善用于病理成像的无透镜显微镜的色彩性能,在这里,我们提出了一种基于小波的颜色融合成像框架,称为“数字颜色融合显微镜”(DCFM),该框架将数字成像的无透镜显微镜图像数字融合在一起。由基于透镜的显微镜拍摄的单个波长和低分辨率,低放大倍率的色彩校准图像,可以简单地成为基于手机的高性价比显微镜。我们显示,使用DCFM技术对H&E染色的乳腺癌组织玻片的成像结果非常接近使用0.75 NA的40倍物镜的色彩校准显微镜。定量比较显示,与RGB组合方法相比,使用DCFM方法的平均色距减少了2倍,同时还保留了无透镜显微镜的高分辨率特征。由于无透镜和手机显微镜技术既具有成本效益,又具有现场便携性,因此通过DCFM框架将它们结合使用对于资源匮乏和即时护理环境中的数字病理学和远程病理学应用可能很有用。 。

著录项

  • 来源
  • 会议地点 San Francisco(US)
  • 作者单位

    Electrical Engineering Department, University of California, Los Angeles, CA, 90095, USA,Bioengineering Department, University of California, Los Angeles, CA, 90095, USA,California NanoSystems Institute (CNSI), University of California, Los Angeles, CA, 90095, USA;

    Electrical Engineering Department, University of California, Los Angeles, CA, 90095, USA,Bioengineering Department, University of California, Los Angeles, CA, 90095, USA,California NanoSystems Institute (CNSI), University of California, Los Angeles, CA, 90095, USA;

    Electrical Engineering Department, University of California, Los Angeles, CA, 90095, USA;

    Electrical Engineering Department, University of California, Los Angeles, CA, 90095, USA,Bioengineering Department, University of California, Los Angeles, CA, 90095, USA,California NanoSystems Institute (CNSI), University of California, Los Angeles, CA, 90095, USA,Department of Surgery, David Geffen School of Medicine, University of California, Los Angeles, CA, 90095, USA;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    lens-free microscopy; lensless microscopy; digital pathology; computational imaging; cellphone-based microscopy; telemedicine; mobile health;

    机译:无透镜显微镜;无透镜显微镜数字病理学计算成像;基于手机的显微镜远程医疗移动健康;

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