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Short communication: The effect of temperature on performance of milk ketone test strips

机译:简短交流:温度对乳酮试纸性能的影响

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摘要

Ketosis is estimated to affect 15% of early lactation dairy cows. A ketone test strip (Keto-Test; Elanco Animal Health, Greenfield, IN) allows producers a method to determine the concentration of β-hydroxybutyrate (BHBA) in milk to track individual animal and herd incidence of ketosis. The objective of this study was to determine the effect of altering the temperature of milk and the test strips at the time of the test on the reliability of the Keto-Test. A total of 118 Holstein cows, ranging from 5 to 17 DIM, were selected from a commercial Holstein dairy herd in Michigan. A milk sample was collected from the right rear quarter of each cow during the a.m. milking. Each sample was tested under 4 temperature conditions: (1) Keto-Test strips and milk at room temperature (RT; 24.0 ± 0.1℃; control; manufacturer's instructions), (2) cold strips (10.8 ± 0.9℃) and milk at RT, (3) cold strips and fresh milk, and (4) strips at RT and fresh milk. Milk was recorded as negative (0-99 μmol/L), weak positive (100-199 μmol/L), positive (200-499 μmol/L), or highly positive (≥500 μmol/L). Blood samples were collected immediately following milk collection and analyzed for BHBA concentration using a ketone test meter. Cows with blood BHBA concentration of ≥ 1,400 μmol/L were considered positive for subclinical ketosis. Accuracy of the Keto-Test strips under the 4 conditions was determined by the κ coefficient of agreement, using the result of condition 1 as the accepted true value. Additionally, sensitivity and specificity were calculated using the blood BHBA concentrations and results of each of the 4 conditions. Using the Keto-Test 60.2% of cows tested negative for milk BHBA, 24.6% tested weak positive, 14.4% tested positive, and 0.8% tested highly positive. The weighted κ coefficient of agreement between the control condition (1) and condition 2, 3, and 4 and 95% lower and upper confidence intervals were as follows: condition 2 = 0.71 (0.62, 0.80), condition 3 = 0.69 (0.60, 0.78), and condition 4 = 0.63 (0.54, 0.73). These results indicate good agreement between the outcome of condition 1 and conditions 2, 3, and 4. The sensitivities/specificities for 1, 2, 3, and 4 were as follows: 0.77/0.79, 0.74/0.75, 0.69/0.88, and 0.69/0.84, indicating that the test in all temperature conditions had a strong ability to detect the presence of BHBA in milk. In conclusion, the reliability of the Keto-Test strips was not dependent on the temperature of the milk or the test strips.
机译:估计酮症会影响15%的早期泌乳奶牛。酮试纸(Keto-Test;伊兰科动物健康,格林菲尔德,印第安纳州)为生产者提供了一种确定牛奶中β-羟基丁酸酯(BHBA)浓度的方法,以追踪动物个体和畜群酮症的发生率。这项研究的目的是确定在测试时改变牛奶和试纸的温度对酮测试的可靠性的影响。从密歇根州的商业荷斯坦奶牛场中选出了118头荷斯坦奶牛,范围从5到17 DIM。在上午挤奶期间,从每头母牛的右后四分之一处采集牛奶样品。每个样品均在4个温度条件下进行测试:(1)室温下的酮测试条和牛奶(室温; 24.0±0.1℃;对照;制造商的说明);(2)冷条(10.8±0.9℃)和牛奶在室温下,(3)冷条和鲜奶,以及(4)RT和新鲜奶条。牛奶记录为阴性(0-99μmol/ L),弱阳性(100-199μmol/ L),阳性(200-499μmol/ L)或高度阳性(≥500μmol/ L)。牛奶收集后立即收集血样,并使用酮测试仪分析BHBA浓度。血液BHBA浓度≥1400μmol/ L的母牛被认为是亚临床酮症阳性。使用条件1的结果作为公认的真实值,通过κ一致性系数确定4种条件下Keto-Test试纸的准确性。此外,使用血液BHBA浓度和这4种情况的结果计算出敏感性和特异性。使用Keto-Test检验,牛奶BHBA阴性的奶牛中有60.2%,弱阳性的奶牛为24.6%,阳性的奶牛为14.4%,高度阳性的奶牛为0.8%。控制条件(1)与条件2、3和4之间以及95%的上下置信区间之间的一致性的加权κ系数如下:条件2 = 0.71(0.62,0.80),条件3 = 0.69(0.60, 0.78),条件4 = 0.63(0.54,0.73)。这些结果表明条件1的结果与条件2、3和4之间的良好一致性。1、2、3和4的敏感性/特异性如下:0.77 / 0.79、0.74 / 0.75、0.69 / 0.88和0.69 / 0.84,表明该测试在所有温度条件下都具有很强的检测牛奶中BHBA的能力。总之,酮试纸的可靠性不取决于牛奶或试纸的温度。

著录项

  • 来源
    《Journal of dairy science》 |2013年第3期|1677-1680|共4页
  • 作者单位

    Department of Animal Science, Michigan State University, East Lansing 48824;

    Department of Population Medicine, University of Guelph, Guelph, Ontario, Canada;

    Department of Animal Science, Michigan State University, East Lansing 48824;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    β-hydroxybutyrate; ketosis; milk;

    机译:β-羟基丁酸酯;酮症牛奶;

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