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Color calibration and fusion of lens-free and mobile-phone microscopy images for high-resolution and accurate color reproduction

机译:无镜头和手机显微镜图像的色彩校准和融合,可实现高分辨率和准确的色彩还原

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Lens-free holographic microscopy can achieve wide-field imaging in a cost-effective and field-portable setup, making it a promising technique for point-of-care and telepathology applications. However, due to relatively narrow-band sources used in holographic microscopy, conventional colorization methods that use images reconstructed at discrete wavelengths, corresponding to e.g., red (R), green (G) and blue (B) channels, are subject to color artifacts. Furthermore, these existing RGB colorization methods do not match the chromatic perception of human vision. Here we present a high-color-fidelity and high-resolution imaging method, termed "digital color fusion microscopy" (DCFM), which fuses a holographic image acquired at a single wavelength with a color-calibrated image taken by a low-magnification lens-based microscope using a wavelet transform-based colorization method. We demonstrate accurate color reproduction of DCFM by imaging stained tissue sections. In particular we show that a lens-free holographic microscope in combination with a cost-effective mobile-phone-based microscope can generate color images of specimens, performing very close to a high numerical-aperture (NA) benchtop microscope that is corrected for color distortions and chromatic aberrations, also matching the chromatic response of human vision. This method can be useful for wide-field imaging needs in telepathology applications and in resource-limited settings, where whole-slide scanning microscopy systems are not available.
机译:无透镜全息显微镜可以经济高效且可现场携带的方式实现宽视场成像,这使其成为即时医疗和远程病理学应用的有前途的技术。然而,由于全息显微术中使用的相对窄带源,使用以离散波长重构的图像的常规着色方法,例如对应于红色(R),绿色(G)和蓝色(B)通道,会产生颜色伪影。 。此外,这些现有的RGB着色方法与人类视觉的色觉不匹配。在这里,我们介绍一种称为“数字彩色融合显微镜”(DCFM)的高色彩保真度和高分辨率成像方法,该方法将在单个波长处获取的全息图像与由低倍率镜头拍摄的色彩校准图像融合在一起基显微镜,使用基于小波变换的着色方法。我们通过对染色的组织切片进行成像演示了DCFM的准确色彩再现。特别是,我们证明了无透镜全息显微镜与具有成本效益的基于手机的显微镜相结合可以生成标本的彩色图像,其性能非常接近于校正了色彩的高数值孔径(NA)台式显微镜畸变和色差,也与人类视觉的色度响应相匹配。此方法可用于远程病理学应用中和在资源有限的环境中的全场成像需求,在这种情况下,无法使用全幻灯片扫描显微镜系统。

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