首页> 外文期刊>Journal of dairy research >Milk β-hydroxybutyrate concentration measured by Fourier-transform infrared and flow-injection analyses from samples taken at different times relative to milking
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Milk β-hydroxybutyrate concentration measured by Fourier-transform infrared and flow-injection analyses from samples taken at different times relative to milking

机译:通过在不同时间相对于挤奶的不同时间采集的样品测量的乳β-羟基丁酯浓度通过傅里叶变换红外和流动注射分析

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Analysis of milk BHB concentration by Fourier-transform infrared (FTIR) spectrometry more frequently than regular milk testing could help dairy producers in decision making, particularly if it would be possible to use small hand-stripped samples (hereinafter simply called samples) taken between dairy herd improvement (DHI) test-samples analysed using DHI algorithms. The aim of this Research Communication was to evaluate milk BHB concentration and the prevalence of elevated milk BHB concentration analysed by FTIR spectrometry compared with flow-injection analysis (SKALAR) from samples taken at different times relative to the milking. A total of 293 early-lactation cows in 44 commercial dairy herds were involved in the study. Herds were visited once during the morning milking when a routine DHI test-sample was obtained using in-line milk samplers. Additional milk samples were taken by hand stripping as follows: (1) Just before connecting the milking machine; (2) immediately after removing the milking machine; (3) 3 h after milking and (4) 6 h after milking. Milk samples were analysed for BHB concentration by FTIR and SKALAR, the latter being the reference method. Milk BHB concentration from samples taken before milking was different between FTIR and SKALAR whereas no difference was noted for other sampling times, although milk BHB concentration rose as time after milking increased. Except for DHI test-samples for which prevalence was not different between analysis methods, prevalence of elevated milk BHB concentration (= 0.15 mmol/l) was greater for FTIR analysis. However, no difference in prevalence was observed between SKALAR and FTIR when using a threshold of = 0.20 mmol/l. In summary, hand-stripped milk samples taken any time after removing the milking machine until 6 h after the milking can be recommended for FTIR analysis of elevated milk BHB concentration prevalence provided a threshold of 0.20 mmol/l is used.
机译:通过傅里叶变换红外(FTIR)光谱法分析牛奶BHB浓度比常规牛奶检测更频繁地帮助乳制品生产商决策,特别是如果可以在乳制品之间采取的小型剥离样品(下文制造简单地称为样本)。使用DHI算法分析的畜群改进(DHI)试验样品。该研究通信的目的是评估乳房BHB浓度和通过在不同时间相对于挤奶中的不同时间采集的样品的流动注射分析(Skarar)进行FTIR光谱分析的乳房BHB浓度的肝脏浓度。共有293名商业乳制品牛群的早期哺乳母牛参与了该研究。当使用在线乳汁采样器获得常规DHI测试样品时,在早晨挤奶中访问了牛群。额外的牛奶样品通过手动剥离如下:(1)在连接挤奶机之前; (2)拆下挤奶机后立即; (3)挤奶后3小时和(4)挤奶后6小时。通过FTIR和Skarar分析牛奶样品的BHB浓度,后者是参考方法。来自挤奶前采样的样品的牛奶BHB浓度不同于FTIR和Skalar之间的不同,而其他取样时间没有差异,尽管挤奶后的时间增加牛奶BHB浓度升高。除了在分析方法之间患病率没有不同的DHI试验样品外,对于FTIR分析,肝脏BHB浓度(> = 0.15mmol / L)的患病率更大。然而,在使用> = 0.20mmol / L的阈值时,Skalar和FTIR之间没有观察到患病率的差异。总之,在除去挤奶机后,在挤奶后的任何时间均采取的挤奶后的挤奶后,可以推荐用于升高的牛奶BHB浓度普及率的FTIR分析,所以使用0.20mmol / L的阈值。

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