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Non-destructive determination of the total bacteria in flounder fillet by portable near infrared spectrometer.

机译:便携式近红外光谱仪无损测定比目鱼柳中的总细菌。

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摘要

There is an emerging trend of non-destructive and onsite analysis of microbial contaminations for better food safety. A new strategy for determination of total bacterial in fish products (flounder fillets) was established using a portable near infrared spectrometer. Results revealed that the pretreatment of near infrared spectrum by the wavelet transform could significantly improve the accuracy and precision of the analysis. In comparison to usually exploited partial least squares regression (PLS), a combination of genetic algorithm (GA) and back-propagation artificial neural network (BP-ANN) exhibited much better efficiency, and the correlation coefficient (R) and root mean square error (RMSE) of the prediction model were calculated as 0.985 and 0.095, respectively, and validated as 0.966 and 0.083, respectively. These results allowed us to suggest a promising potential of the established technique for non-destructive and onsite monitoring of total bacteria in fishery products
机译:为了提高食品安全性,对微生物污染进行非破坏性和现场分析的趋势正在出现。使用便携式近红外光谱仪建立了一种测定鱼产品(比目鱼片)中细菌总数的新策略。结果表明,通过小波变换对近红外光谱进行预处理可以显着提高分析的准确性和准确性。与通常使用的偏最小二乘回归(PLS)相比,遗传算法(GA)和反向传播人工神经网络(BP-ANN)的组合具有更高的效率,并且相关系数(R)和均方根误差预测模型的(RMSE)分别计算为0.985和0.095,并分别验证为0.966和0.083。这些结果使我们提出了一种用于渔业产品中总细菌的非破坏性和现场监测的既有技术的潜力

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