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Decoding of Quantum Dots Encoded Microbeads Using a Hyperspectral Fluorescence Imaging Method

机译:高光谱荧光成像方法对量子点编码微珠的解码

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摘要

We presented a decoding method of quantum dots encoded Microbeads with its fluorescence spectra using line scan hyperspectral fluorescence imaging (HFI) method. A HFI method was developed to attain both the spectra of fluorescence signal and the spatial information of the encoded microbeads. A decoding scheme was adopted to decode the spectra of multicolor microbeads acquired by the HFI System. Comparison experiments between the HFI system and the flow cytometer were Conducted. The results showed that the HFI System has higher spectrum resolution; thus, more channels in spectral dimension can be used. The HFI system detection and decoding experiment with the single-stranded DNA (ssDNA) immobilized multicolor beads was,done, and the result showed the efficiency of the HFI system. Surface modification: of the microbeads by use of the polydopamine was characterized by the scanning electron microscopy and ssDNA immobilization was characterized by the :laser confocal microscope. These results indicate that the designed HFI system can be applied to practical biological and medical applications.
机译:我们提出了一种使用线扫描高光谱荧光成像(HFI)方法对量子点编码的微珠及其荧光光谱进行解码的方法。开发了一种HFI方法来获得荧光信号的光谱和编码微珠的空间信息。采用解码方案对HFI系统采集的多色微珠的光谱进行解码。进行了HFI系统和流式细胞仪的对比实验。结果表明,HFI系统具有更高的频谱分辨率;因此,可以使用更多频谱尺寸的通道。进行了单链DNA(ssDNA)固定化多色珠的HFI系统检测和解码实验,结果表明了该系统的有效性。表面修饰:使用聚多巴胺对微珠进行表面扫描电子显微镜表征,并通过:激光共聚焦显微镜对ssDNA固定化进行表征。这些结果表明,所设计的HFI系统可以应用于实际的生物学和医学应用。

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