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Orthographic Projection Capillary Array Fluorescent Sensor for mHealth

机译:正射投影毛细管阵列荧光传感器用于mHealth

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摘要

To overcome the limited sensitivity of phone cameras for mobile health (mHealth) fluorescent detection, we have previously developed a capillary array which enables a ~100× increase in detection sensitivity. However, for an effective detection platform, the optical configuration must allow for uniform measurement sensitivity between channels when using such a capillary array sensor. This is a challenge due to the parallax inherent in imaging long parallel capillary tubes with typical lens configurations.To enable effective detection, we have developed an orthographic projection system in this work which forms parallel light projection images from the capillaries using an object-space telecentric lens configuration. This optical configuration results in a significantly higher degree of uniformity in measurement between channels, as well as a significantly reduced focal distance, which enables a more compact sensor.A plano-convex lens (f = 150 mm) was shown to produce a uniform orthographic projection when properly combined with the phone camera’s built in lens (f = 4 mm), enabling measurements of long capillaries (125 mm) to be made from a distance of 160 mm. The number of parallel measurements which can be made is determined by the size of the secondary lens. Based on these results, a more compact configuration with shorter 32 mm capillaries and a plano-convex lens with a shorter focal length (f = 10 mm) was constructed.This optical system was used to measure serial dilutions of fluorescein with a limit of detection (LOD) of 10 nM, similar to the LOD of a commercial plate reader. However, many plate readers based on standard 96 well plate requires sample volumes of 100 ul for measurement, while the capillary array requires a sample volume of less than 10 ul.This optical configuration allows for a device to make use of the ~100× increase in fluorescent detection sensitivity produced by capillary amplification while maintaining a compact size and capability to analyze extremely small sample volumes. Such a device based on a phone or other optical mHealth technology will have the sensitivity of a conventional plate reader but have greater mHealth clinical utility, especially for telemedicine and for resource-poor settings and global health applications.
机译:为了克服手机相机对移动健康(mHealth)荧光检测灵敏度的限制,我们之前已经开发出一种毛细管阵列,可使检测灵敏度提高约100倍。但是,对于有效的检测平台,使用这种毛细管阵列传感器时,光学配置必须允许通道之间的均匀测量灵敏度。由于对具有典型透镜配置的长平行毛细管进行成像时固有的视差,因此这是一个挑战。为实现有效检测,我们开发了一种正射投影系统,该系统使用物空间远心镜从毛细血管形成平行光投影图像镜头配置。这种光学配置可显着提高通道之间的测量均匀度,并显着减小焦距,从而实现更紧凑的传感器。平凸透镜(f = 150 mm)被证明可产生均匀的正交投影与手机相机的内置镜头(f = 4 mm)正确组合时,可以进行投影,从而可以从160 mm的距离进行长毛细血管(125 mm)的测量。可以进行的平行测量的数量取决于辅助透镜的尺寸。根据这些结果,构建了更紧凑的结构,具有更短的32 mm毛细管和更短焦距(f = 10 mm)的平凸透镜。该光学系统用于检测荧光素的系列稀释液,并且具有检测极限(LOD)为10 nM,类似于商用酶标仪的LOD。但是,许多基于标准96孔板的读板器需要100 ul的样品量进行测量,而毛细管阵列所需的样品量小于10 ul,这种光学配置使设备可以利用〜100倍的增量毛细管扩增产生的荧光检测灵敏度高,同时保持紧凑的尺寸和分析极小样品量的能力。这种基于电话或其他光学mHealth技术的设备将具有传统读板器的灵敏度,但具有更大的mHealth临床效用,尤其是对于远程医疗和资源匮乏的环境以及全球健康应用。

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