Chemical Profiling with Modeling Differentiates Wild and Farm-Raised Salmon
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  • 作者:Kim A. Anderson ; Kevin A. Hobbie ; Brian W. Smith
  • 刊名:Journal of Agricultural and Food Chemistry
  • 出版年:2010
  • 出版时间:November 24, 2010
  • 年:2010
  • 卷:58
  • 期:22
  • 页码:11768-11774
  • 全文大小:852K
  • 年卷期:v.58,no.22(November 24, 2010)
  • ISSN:1520-5118
文摘
Classifications of fish production methods, wild or farm-raised salmon, by elemental profiles or C and N stable isotope ratios combined with various modeling approaches were determined. Elemental analysis (As, Ba, Be, Ca, Co, Cd, Cr, Cu, Fe, K, Mg, Mn, Na, Ni, P, Pb, Sr, Ti, and Zn) of wild and farm-raised salmon samples was performed using an inductively coupled plasma atomic emission spectroscopy. Isotopic and compositional analyses of carbon and nitrogen were performed using mass spectrometry as an alternative fingerprinting technique. Each salmon (king salmon, Oncorhynchus tshawytscha; coho salmon, Oncorhynchus kisutch; Atlantic salmon, Salmo salar) was analyzed from two food production practices, wild and farm raised. Principal component analysis (PCA) and canonical discriminant analysis (CDA) were used for data exploration and visualization. Five classification modeling approaches were investigated: linear discriminate function, quadratic discriminant function, neural network, probabilistic neural network, and neural network bagging. Methods for evaluating model reliability included four strategies: resubstitution, cross-validation, and two very different test set scenarios. Generally speaking, the models performed well, with the percentage of samples classified correctly depending on the particular choice of model and evaluation method used.

Keywords (keywords):

Principal component analysis; canonical discriminant analysis; elemental analysis; stable isotope; salmon (Salmonidae); food labeling; linear discriminant function; quadratic discriminant function; neural network; genetic neural network; modeling; farmed salmon; fish production methods; stable isotopes

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