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A low cost mobile phone dark-field microscope for nanoparticle-based quantitative studies

机译:用于纳米颗粒定量研究的低成本手机暗场显微镜

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摘要

Dark-field microscope (DFM) analysis of nanoparticle binding signal is highly useful for a variety of research and biomedical applications, but current applications for nanoparticle quantification rely on expensive DFM systems. The cost, size, limited robustness of these DFMs limits their utility for non-laboratory settings. Most nanoparticle analyses use high-magnification DFM images, which are labor intensive to acquire and subject to operator bias. Low-magnification DFM image capture is faster, but is subject to background from surface artifacts and debris, although image processing can partially compensate for background signal. We thus mated an LED light source, a dark-field condenser and a 20× objective lens with a mobile phone camera to create an inexpensive, portable and robust DFM system suitable for use in non-laboratory conditions. This proof-of-concept mobile DFM device weighs less than 400g and costs less than $2000, but analysis of images captured with this device reveal similar nanoparticle quantitation results to those acquired with a much larger and more expensive desktop DFMM system. Our results suggest that similar devices may be useful for quantification of stable, nanoparticle-based activity and quantitation assays in resource-limited areas where conventional assay approaches are not practical.
机译:纳米粒子结合信号的暗场显微镜(DFM)分析在各种研究和生物医学应用中非常有用,但是当前用于纳米粒子定量的应用依赖于昂贵的DFM系统。这些DFM的成本,尺寸,有限的耐用性限制了它们在非实验室环境中的实用性。大多数纳米颗粒分析使用高倍率DFM图像,因为这些图像采集和操作人员的工作量大,劳动强度大。低倍放大DFM图像捕获速度更快,但会受到表面伪影和碎屑的背景影响,尽管图像处理可以部分补偿背景信号。因此,我们将LED光源,暗视场聚光镜和20倍物镜与手机相机配合使用,以创建适用于非实验室条件的廉价,便携式且坚固的DFM系统。这种概念验证的移动DFM设备重量不到400克,成本不到2000美元,但是对通过该设备捕获的图像进行的分析显示,纳米颗粒定量结果与使用更大,更昂贵的台式DFMM系统获得的结果相似。我们的研究结果表明,在常规测定方法不可行的资源有限的地区,类似的设备可能对定量,稳定的基于纳米颗粒的活性和定量测定有用。

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