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Effects of running time of a cattle-cooling system on core body temperature of cows on dairy farms in an arid environment

机译:干旱环境下奶牛冷却系统运行时间对奶牛核心体温的影响

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摘要

Two experiments were conducted on a commercial dairy farm to describe the effects of a reduction in Ko-rral Kool (KK; Korral Kool Inc., Mesa, AZ) system operating time on core body temperature (CBT) of primiparous and multiparous cows. In the first experiment, KK systems were operated for 18, 21, or 24 h/d while CBT of 63 multiparous Holstein dairy cows was monitored. All treatments started at 0600 h, and KK systems were turned off at 0000 h and 0300 h for the 18-h and 21-h treatments, respectively. Animals were housed in 9 pens and assigned randomly to treatment sequences in a 3 × 3 Latin square design. In the second experiment, 21 multiparous and 21 primiparous cows were housed in 6 pens and assigned randomly to treatment sequences (KK operated for 21 or 24 h/d) in a switchback design. All treatments started at 0600 h, and KK systems were turned off at 0300 h for the 21-h treatments. In experiment 1, cows in the 24-h treatment had a lower mean CBT than cows in the 18- and 21-h treatments (38.97, 39.08, and 39.03 ± 0.04℃, respectively). The significant treatment by time interaction showed that the greatest treatment effects occurred at 0600 h; treatment means at this time were 39.43, 39.37, and 38.88 ± 0.18℃ for 18-, 21-, and 24-h treatments, respectively. These results demonstrate that a reduction in KK system running time of >3 h/d will increase CBT. In experiment 2, a significant parity by treatment interaction was found. Multiparous cows on the 24-h treatment had lower mean CBT than cows on the 21-h treatment (39.23 and 39.45 ± 0.17℃, respectively), but treatment had no effect on mean CBT of primiparous cows (39.50 and 39.63 ± 0.20℃ for 21- and 24-h treatments, respectively). A significant treatment by time interaction was observed, with the greatest treatment effects occurring at 0500 h; treatment means at this time were 39.57, 39.23, 39.89, and 39.04 ± 0.24℃ forrn21-h primiparous, 24-h primiparous, 21-h multiparous, and 24-h multiparous cows, respectively. These results demonstrate that multiparous and primiparous cows respond differently when KK system running time decreases from 24 to 21 h. We conclude that in desert climates, the KK system should be operated continuously to decrease heat stress of multiparous dairy cows, but that operating time could be reduced from 24 to 21 h for primiparous cows. Reducing system operation time should be done carefully, however, because CBT was elevated in all treatments.
机译:在一个商业奶牛场进行了两个实验,描述了减少Ko-rral Kool(KK; Korral Kool Inc.,Mesa,AZ)系统运行时间对初生和多胎母牛核心体温(CBT)的影响。在第一个实验中,KK系统每天运行18、21或24 h,同时监测63头荷斯坦奶牛的CBT。所有处理均在0600 h开始,对于18 h和21 h处理,分别在0000 h和0300 h关闭KK系统。将动物圈养在9支钢笔中,并按3×3拉丁方形设计随机分配处理顺序。在第二个实验中,将21头多胎母牛和21头初乳母牛放在6头围栏中,并以折返设计随机分配给治疗顺序(KK进行21或24 h / d操作)。所有处理均在0600 h开始,对于21 h处理,KK系统在0300 h关闭。在实验1中,经过24小时处理的母牛的平均CBT低于经过18小时和21小时处理的母牛(分别为38.97、39.08和39.03±0.04℃)。时间相互作用的显着治疗表明,最大的治疗效果发生在0600 h处。对于18、21和24小时处理,此时的处理平均值分别为39.43、39.37和38.88±0.18℃。这些结果表明,KK系统运行时间减少> 3 h / d将增加CBT。在实验2中,通过治疗相互作用发现了相当的均等性。 24小时处理的多头母牛的平均CBT低于21小时处理的母牛(分别为39.23和39.45±0.17℃),但处理对初产母牛的平均CBT没有影响(39.50和39.63±0.20℃分别为21小时和24小时治疗)。通过时间相互作用观察到显着的治疗,最大的治疗效果发生在0500 h处。此时的处理方式分别是:对于21小时初产,24小时初产,21小时复产和24小时复产的母牛,分别为39.57、39.23、39.89和39.04±0.24℃。这些结果表明,当KK系统运行时间从24小时减少到21小时时,多头和初生母牛的反应不同。我们得出的结论是,在沙漠气候下,应连续运行KK系统以减少多头奶牛的热应激,但对于初生奶牛,其运行时间可以从24 h减少到21 h。但是,应减少系统运行时间,因为在所有处理中CBT都会升高。

著录项

  • 来源
    《Journal of dairy science》 |2010年第10期|p.4949-4954|共6页
  • 作者单位

    Department of Animal Sciences and Industry,Kansas State University, Manhattan 66502;

    rnDepartment of Animal Sciences and Industry,Kansas State University, Manhattan 66502;

    rnDepartment of Animal Sciences and Industry,Kansas State University, Manhattan 66502;

    rnDepartment of Biological and Agricultural Engineering, Kansas State University, Manhattan 66502;

    rnNADAAI-Othman, Al Ahsa, Saudi Arabia 31982;

  • 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

    heat stress; evaporative cooling; arid environment;

    机译:热应激;蒸发冷却;干旱的环境;
  • 入库时间 2022-08-17 23:24:51

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