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一种新型手持式荧光微阵列读取器,用于即时诊断。

A novel handheld fluorescent microarray reader for point-of-care diagnostic.

机构信息

Fraunhofer Institute for Biomedical Engineering (IBMT), Am Mühlenberg 13, 14476 Potsdam-Golm, Germany.

出版信息

Biosens Bioelectron. 2013 Sep 15;47:415-20. doi: 10.1016/j.bios.2013.03.043. Epub 2013 Mar 29.

Abstract

A novel handheld optical sensor for quantification of fluorescent microarrays, the so-called portMD-113 has been developed. On the surface of a planar waveguide, the spots of different fluorescently labeled biological complexes are excited by the evanescent field of the guided light. The emitted fluorescence signals of the spots are independently and simultaneously detected applying our system, which consists of a pinehole array, a microlens array, an interference filter and a detector array. As it is demonstrated in comparative measurements, the detection limit of this sensor is close to that of commercial top microarray readers, e.g. of modern laser scanners, while it has remarkable and important advantages over them. Namely, the device comprises only a few low-cost, lightweight and small components without applying any moving or energy-intensive elements, which results in turn in a commercially competitive, handheld and compact design and in the possibility to be supplied simply by a battery or a personal computer. These advantageous properties open prospects e.g. for point-of-care medical checks, as well.

摘要

一种新型的手持式荧光微阵列定量光学传感器,即所谓的 portMD-113,已经被开发出来。在平面波导的表面上,不同荧光标记的生物复合物的斑点被导光的消逝场激发。应用我们的系统,独立地同时检测斑点的发射荧光信号,该系统由针孔阵列、微透镜阵列、干涉滤光片和探测器阵列组成。如在比较测量中所证明的,该传感器的检测极限接近商业顶级微阵列读取器的检测极限,例如现代激光扫描仪,而它与它们相比具有显著且重要的优势。也就是说,该设备仅由几个低成本、轻量级和小尺寸的组件组成,而无需应用任何移动或能源密集型元件,这反过来又导致了具有商业竞争力的、手持式的和紧凑的设计,以及可以简单地由电池或个人计算机供电的可能性。这些有利的特性为医疗保健点的医疗检查等领域开辟了前景。

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