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使用智能手机在液体样本中进行荧光纳米颗粒检测以用于生物医学应用。

Fluorescence Nano Particle Detection in a Liquid Sample Using the Smartphone for Biomedical Application.

作者信息

G Anand, T Thyagarajan, Ramakrishnan Sabitha

机构信息

Department of Instrumentation Engineering, Madras Institute of Technology Campus, Anna University, Chennai, India.

出版信息

J Fluoresc. 2022 Jan;32(1):135-143. doi: 10.1007/s10895-021-02799-w. Epub 2021 Oct 11.

Abstract

In this paper, we present a Smartphone-based Fluorescence Nanoparticle Detector (SPF-NPD) that can be used for identifying biological agents in biomedical applications. The experimental setup consists of an LED light source and an Eppendorf tube holder placed inside a dark chamber with an optimally located slit for aligning the camera of a smartphone. The camera acquires the fluorescence intensity variations in the target liquid sample placed in the Eppendorf tube and passes it to a dedicated android application running in the smartphone. Using the principle of fluorescence-based pathogen detection, the android application detects the pathogens and displays the results within a few seconds. Since, all smartphones are equipped with high-resolution cameras, the proposed SPF-NPD provides a simple and elegant solution for instantaneous detection of fluorescence nano particles and has a great potential for healthcare applications for live detection of pathogens. The intensity measurement in SPF-NPD algorithm uses 5-pixel method, that is, the center pixel followed by four immediate neighbor pixels, because of which, minimal sample quantity is sufficient for precise measurements. We establish the robustness of SPF-NPD through exhaustive experiments with various smartphone cameras having different resolutions ranging from 8 to 20 Megapixels. The results of the proposed SPF-NPD method are validated against those obtained from standard devices such as Perkin-Elmer Picoflor and Perkin-Elmer Enspire. The advantages of the proposed method are highlighted.

摘要

在本文中,我们展示了一种基于智能手机的荧光纳米颗粒探测器(SPF-NPD),它可用于生物医学应用中生物制剂的识别。实验装置由一个LED光源和一个放置在暗室内的Eppendorf管架组成,暗室内有一个位置最佳的狭缝,用于对准智能手机的摄像头。摄像头采集放置在Eppendorf管中的目标液体样本的荧光强度变化,并将其传输到智能手机中运行的专用安卓应用程序。利用基于荧光的病原体检测原理,安卓应用程序检测病原体并在几秒钟内显示结果。由于所有智能手机都配备了高分辨率摄像头,所提出的SPF-NPD为荧光纳米颗粒的即时检测提供了一种简单而优雅的解决方案,并且在病原体实时检测的医疗应用中具有巨大潜力。SPF-NPD算法中的强度测量采用5像素法,即中心像素及其四个紧邻像素,因此,只需极少的样本量就足以进行精确测量。我们通过使用分辨率从8到20兆像素不等的各种智能手机摄像头进行详尽实验,确立了SPF-NPD的稳健性。所提出的SPF-NPD方法的结果与从标准设备如珀金埃尔默Picoflor和珀金埃尔默Enspire获得的结果进行了验证。突出了所提方法的优点。

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