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基于无透镜非相干全息术的用于远程医疗应用的紧凑、轻量级且具有成本效益的显微镜。

Compact, light-weight and cost-effective microscope based on lensless incoherent holography for telemedicine applications.

机构信息

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

出版信息

Lab Chip. 2010 Jun 7;10(11):1417-28. doi: 10.1039/c000453g. Epub 2010 Apr 19.

Abstract

Despite the rapid progress in optical imaging, most of the advanced microscopy modalities still require complex and costly set-ups that unfortunately limit their use beyond well equipped laboratories. In the meantime, microscopy in resource-limited settings has requirements significantly different from those encountered in advanced laboratories, and such imaging devices should be cost-effective, compact, light-weight and appropriately accurate and simple to be usable by minimally trained personnel. Furthermore, these portable microscopes should ideally be digitally integrated as part of a telemedicine network that connects various mobile health-care providers to a central laboratory or hospital. Toward this end, here we demonstrate a lensless on-chip microscope weighing approximately 46 grams with dimensions smaller than 4.2 cm x 4.2 cm x 5.8 cm that achieves sub-cellular resolution over a large field of view of approximately 24 mm(2). This compact and light-weight microscope is based on digital in-line holography and does not need any lenses, bulky optical/mechanical components or coherent sources such as lasers. Instead, it utilizes a simple light-emitting-diode (LED) and a compact opto-electronic sensor-array to record lensless holograms of the objects, which then permits rapid digital reconstruction of regular transmission or differential interference contrast (DIC) images of the objects. Because this lensless incoherent holographic microscope has orders-of-magnitude improved light collection efficiency and is very robust to mechanical misalignments it may offer a cost-effective tool especially for telemedicine applications involving various global health problems in resource limited settings.

摘要

尽管光学成象技术取得了飞速发展,但大多数先进的显微镜模式仍然需要复杂且昂贵的设备,这使得它们的应用范围仅限于设备齐全的实验室。与此同时,资源有限环境下的显微镜技术具有与先进实验室不同的要求,这种成像设备应该具有成本效益、紧凑、轻巧,并且具有适当的准确性和简单性,以便经过最低限度培训的人员使用。此外,这些便携式显微镜最好能够作为远程医疗网络的一部分进行数字化集成,将各种移动医疗服务提供者连接到中央实验室或医院。为此,我们展示了一种重量约为 46 克,尺寸小于 4.2cm×4.2cm×5.8cm 的无透镜片上显微镜,可在大约 24mm(2)的大视场中实现亚细胞分辨率。这种紧凑且轻巧的显微镜基于数字共焦全息术,不需要任何透镜、庞大的光学/机械组件或相干光源(如激光)。相反,它利用简单的发光二极管(LED)和紧凑的光电传感器阵列来记录物体的无透镜全息图,然后可以快速数字重建物体的常规透射或微分干涉对比(DIC)图像。由于这种无透镜非相干全息显微镜具有数量级提高的光收集效率,并且对机械失准非常稳健,因此它可能是一种具有成本效益的工具,特别是对于涉及资源有限环境中各种全球健康问题的远程医疗应用。

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本文引用的文献

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