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Portable bright-field fluorescence and cross-polarized microscope toward point-of-care imaging diagnostics

机译:便携式明场荧光和交叉极化显微镜用于即时医疗影像诊断

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摘要

Emerging technologies are enabling the feasibility of new types of point-of-care diagnostic devices. A portable, multimodal microscopy platform intended for use in remote diagnostic applications is presented. Use of such a system could bring high-quality microscopy to field use for diseases such as malaria, allowing better diagnostic and surveillance information to be gathered. The microscope was designed using off-the-shelf components and a manual filter selection to generate bright-field, fluorescent, and cross-polarized images of samples mounted to microscopy slides. Design parameters for the system are discussed, and characterization is performed using standardized imaging targets, multimodal phantoms, and blood smears simulating those used in malaria diagnosis. The microscope is shown to be able to image below element 9-3 of a 1951 U.S. Air Force target, indicating that the system is capable of resolving features . Morphological indicators of can be visualized in images from each modality and combined into high-contrast composite images. To optimize parasitic feature contrast across all three imaging modes, several different staining techniques were compared, with results indicating that use of a single nucleic acid binding fluorophore is preferable.
机译:新兴技术使新型即时诊断设备成为可能。提出了一种旨在用于远程诊断应用的便携式多模式显微镜平台。使用这样的系统可以将高质量的显微镜技术带到野外用于诸如疟疾之类的疾病,从而可以收集更好的诊断和监测信息。使用现成的组件和手动过滤器选择来设计显微镜,以生成安装在显微镜载玻片上的样品的明场,荧光和交叉极化图像。讨论了系统的设计参数,并使用标准化的成像目标,多模式体模和模拟疟疾诊断中使用的血液涂片进行了表征。示出的显微镜能够在1951年美国空军目标的9-3元素下方成像,表明该系统能够解析特征。形态指标可以在每种模态的图像中可视化,并组合成高对比度的合成图像。为了优化所有三种成像模式下的寄生特征对比度,比较了几种不同的染色技术,结果表明使用单个核酸结合荧光团是优选的。

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