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Lensless Imaging and Sensing

机译:无镜头成像和传感

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摘要

High-resolution optical microscopy has traditionally relied on high-magnification and high-numerical aperture objective lenses. In contrast, lensless microscopy can provide high-resolution images without the use of any focusing lenses, offering the advantages of a large field of view, high resolution, cost-effectiveness, portability, and depth-resolved three-dimensional (3D) imaging. Here we review various approaches to lensless imaging, as well as its applications in biosensing, diagnostics, and cytometry. These approaches include shadow imaging, fluorescence, holography, superresolution 3D imaging, iterative phase recovery, and color imaging. These approaches share a reliance on computational techniques, which are typically necessary to reconstruct meaningful images from the raw data captured by digital image sensors. When these approaches are combined with physical innovations in sample preparation and fabrication, lensless imaging can be used to image and sense cells, viruses, nanoparticles, and biomolecules. We conclude by discussing several ways in which lensless imaging and sensing might develop in the near future.
机译:高分辨率光学显微镜传统上依赖于高倍率和高数值孔径的物镜。相比之下,无透镜显微镜可以在不使用任何聚焦透镜的情况下提供高分辨率图像,具有以下优点:视野宽阔,分辨率高,成本效益高,便携性强,并且具有深度分辨的三维(3D)成像功能。在这里,我们回顾了无透镜成像的各种方法,及其在生物传感,诊断和细胞计数中的应用。这些方法包括阴影成像,荧光,全息照相,超分辨率3D成像,迭代相位恢复和彩色成像。这些方法共享对计算技术的依赖,计算技术通常是从数字图像传感器捕获的原始数据中重建有意义的图像所必需的。当这些方法与样品制备和制造中的物理创新相结合时,无透镜成像可用于成像和传感细胞,病毒,纳米颗粒和生物分子。最后,我们讨论了在不久的将来无镜头成像和传感发展的几种方式。

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