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Rapid quantitative image analysis of hCG by gold immunochromatographic assay and genetic fast FCM algorithm

机译:黄金免疫色谱法和遗传快速FCM算法快速定量分析hCG

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In this paper, a CCD-based imaging gold immunochromatographic assay system combining genetic fast FCM algorithm is developed for rapid quantitative detection of human chorionic gonadotropin(hCG). The image of gold immunochromatographic strip is taken by CCD sensor, and after using the genetic fast FCM algorithm to precisely extract the test and control lines of strips, the reflective integral optical density(IOD) is selected as the feature based on Lambert-beer law. The ratio (IODt/IODc) is directly proportional to the concentration of hCG in a sample by which the interference in the test and control lines can be cancelled out each other. We observe a good linearity(correlation of coefficient r = 0.98995) from the construction of standard curve throughout the entire measuring range 0–500mIU/ml, and the detection limit of the proposed method is enough sensitive to detect the hCG in the blood or urine of the pregnancy woman. The precision of the intra-assay expressed as coefficient of variation(CV) is below 12%. The system presented here takes less than 10min to perform from the sample treatment to the data analysis. Relative to scanning reflective optical system, our results suggest that a simple CCD-based imaging system can speed assay development, reduce errors, and improve accuracy.
机译:本文开发了一种结合遗传快速FCM算法的基于CCD的成像金免疫层析测定系统,用于快速定量检测人绒毛膜促性腺激素(hCG)。用CCD传感器拍摄金免疫层析条的图像,并使用遗传快速FCM算法精确提取条的测试和控制线后,根据Lambert-beer定律选择反射积分光密度(IOD)作为特征。 。比值(IOD t / IOD c )与样品中hCG的浓度成正比,从而可以相互抵消测试线和控制线中的干扰。通过在整个测量范围0–500mIU / ml范围内建立标准曲线,我们观察到了良好的线性(系数r = 0.98995的相关性),并且该方法的检测极限足以检测血液或尿液中的hCG女人的画像。表示为变异系数(CV)的测定内精度低于12%。从样品处理到数据分析,此处介绍的系统只需不到10分钟的时间即可完成。相对于扫描反射光学系统,我们的结果表明,简单的基于CCD的成像系统可以加快分析开发速度,减少误差并提高准确性。

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