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Comparison of Fatty Acid Proportions Determined by Mid-Infrared Spectroscopy and Gas Chromatography in Bulk and Individual Milk Samples

机译:中红外光谱法测定的脂肪酸比较和散装和单个牛奶样品中的气相色谱法测定

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Rapid analytical methods can contribute to the expansion of milk fatty acid determination for various important practical purposes. The reliability of data resulting from these routine methods plays a crucial role. Bulk and individual milk samples (60 and 345, respectively) were obtained from Czech Fleckvieh and Holstein dairy cows in the Czech Republic. The correlation between milk fatty acid (FA) proportions determined by the routine method (infrared spectroscopy in the mid-region in connection with Fourier transformation; FT-MIR) and the reference method (gas chromatography; GC) was evaluated. To validate the calibration of the FT-MIR method, a linear regression model was used. For bulk milk samples, the correlation coefficients between these methods were higher for the saturated (SFAs) and unsaturated FAs (UFAs) (r = 0.7169 and 0.9232; p 0.001) than for the trans isomers of UFAs (TFAs) and polyunsaturated FAs (PUFAs) (r = 0.5706 and 0.6278; p 0.001). Similar results were found for individual milk samples: r = 0.8592 and 0.8666 ( p 0.001) for SFAs and UFAs, 0.1690 ( p 0.01) for TFAs, and 0.3314 ( p 0.001) for PUFAs. The correlation coefficients for TFAs and PUFAs were statistically significant but too low for practical analytical application. The results indicate that the FT-MIR method can be used for routine determination mainly for SFAs and UFAs.
机译:快速的分析方法可以有助于牛奶脂肪酸测定的各种重要实际目的。由这些常规方法产生的数据的可靠性起着至关重要的作用。批量和单独的牛奶样品(分别为60和345)是从捷克共和国的捷克Fleckvieh和Holstein乳制奶牛获得的。通过常规方法(与傅里叶变换相关的中区域中的红外光谱法测定的乳脂肪酸(FA)比例与参考方法(气相色谱法; GC)确定的乳脂肪酸(FA)比例的相关性。为了验证FT-MIR方法的校准,使用了线性回归模型。对于散装牛奶样品,这些方法之间的相关系数对于饱和(SFA)和不饱和Fas(UFA)(r = 0.7169和0.9232; p <0.001)而不是UFAs(TFAS)和多不饱和FAS( pufas)(r = 0.5706和0.6278; p <0.001)。对于单独的牛奶样品:r = 0.8592和0.8666(P <0.001)的SFA和UFAs,TFAs的0.1690(P <0.01),0.3314(P <0.001)的r = 0.8592和0.8666(p <0.001)。对于实际分析应用,TFAS和PUFA的相关系数具有统计学意义但太低。结果表明,FT-MIR方法可用于主要针对SFA和UFA的常规测定。

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