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使用具有多元校准的近红外(NIR)激光散射成像系统对食源性病原体进行分类。

Classification of foodborne pathogens using near infrared (NIR) laser scatter imaging system with multivariate calibration.

作者信息

Pan Wenxiu, Zhao Jiewen, Chen Quansheng

机构信息

School of Food and Biological Engineering, Jiangsu University, Zhenjiang 212013, China.

出版信息

Sci Rep. 2015 Apr 10;5:9524. doi: 10.1038/srep09524.

Abstract

An optical sensor system, namely NIR laser scatter imaging system, was developed for rapid and noninvasive classification of foodborne pathogens. This developed system was used for images acquisition. The current study is focused on exploring the potential of this system combined with multivariate calibrations in classifying three categories of popular bacteria. Initially, normalization and Zernike moments extraction were performed, and the resultant translation, scale and rotation invariances were applied as the characteristic variables for subsequent discriminant analysis. Both linear (LDA, KNN and PLSDA) and nonlinear (BPANN, SVM and OSELM) pattern recognition methods were employed comparatively for modeling, and optimized by cross validation. Experimental results showed that the performances of nonlinear tools were superior to those of linear tools, especially for OSELM model with 95% discrimination rate in the prediction set. The overall results showed that it is extremely feasible for rapid and noninvasive classifying foodborne pathogens using this developed system combined with appropriate multivariate calibration.

摘要

开发了一种光学传感器系统,即近红外激光散射成像系统,用于对食源性病原体进行快速、无创分类。该开发系统用于图像采集。当前的研究重点是探索该系统与多元校准相结合在对三类常见细菌进行分类方面的潜力。首先进行归一化和泽尼克矩提取,并将所得的平移、尺度和旋转不变性用作后续判别分析的特征变量。比较采用线性(线性判别分析、K近邻和偏最小二乘判别分析)和非线性(反向传播人工神经网络、支持向量机和在线序列极限学习机)模式识别方法进行建模,并通过交叉验证进行优化。实验结果表明,非线性工具的性能优于线性工具,特别是在线序列极限学习机模型在预测集中的判别率为95%。总体结果表明,使用该开发系统结合适当的多元校准对食源性病原体进行快速、无创分类是极其可行的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/43a8/5381752/d73021b858d3/srep09524-f1.jpg

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