Department of Electronics and Information Engineering, Korea University, Sejong, Republic of Korea; Department of Physics, Rajiv Ghandi University, Rono Hills, Arunachal Pradesh, India.
Department of Electronics and Information Engineering, Korea University, Sejong, Republic of Korea.
Biosens Bioelectron. 2017 Feb 15;88:130-143. doi: 10.1016/j.bios.2016.07.115. Epub 2016 Aug 1.
Recently, lens-free imaging has evolved as an alternative imaging technology. The key advantages of this technology, including simplicity, compactness, low cost, and flexibility of integration with other components, have facilitated the realization of many innovative applications, especially, in the fields of the on-chip lens-free imaging and sensing. In this review, we discuss the development of lens-free imaging, from theory to applications. This article includes the working principle of lens-free digital inline holography (DIH) with coherent and semi coherent light, on-chip lens-free fluorescence imaging and sensing, lens-free on-chip tomography, lens-free on-chip gigapixel nanoscopy, detection of nanoparticles using on-chip microscopy, wide field microscopy, and lens-free shadow image based point-of-care systems. Additionally, this review also discusses the lens-free fluorescent imaging and its dependence on structure and optical design, the advantage of using the compact lens-free driven equilibrium Fourier transform (DEFT) resolved imaging technique for on-chip tomography, the pixel super-resolved algorithm for gigapixel imaging, and the lens-free technology for point-of-care applications. All these low-cost, compact, and fast-processing lens-free imaging and sensing techniques may play a crucial role especially in the fields of environmental, pharmaceutical, biological, and clinical applications of the resource-limited settings.
近年来,无透镜成像已经发展成为一种替代成像技术。该技术的主要优势包括简单、紧凑、低成本以及与其他组件集成的灵活性,这促进了许多创新应用的实现,特别是在片上无透镜成像和传感领域。在这篇综述中,我们讨论了无透镜成像从理论到应用的发展。本文包括相干和非相干光的无透镜数字在线全息术(DIH)、片上无透镜荧光成像和传感、片上无透镜层析成像、片上无透镜千兆像素纳米显微镜、使用片上显微镜检测纳米粒子、宽场显微镜和基于无透镜阴影图像的即时护理系统的工作原理。此外,这篇综述还讨论了无透镜荧光成像及其对结构和光学设计的依赖性,使用紧凑的无透镜驱动平衡傅里叶变换(DEFT)分辨成像技术进行片上层析成像的优势,用于千兆像素成像的像素超分辨率算法,以及用于即时护理应用的无透镜技术。所有这些低成本、紧凑、快速处理的无透镜成像和传感技术可能在环境、制药、生物和临床应用等资源有限的领域发挥关键作用。