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How do cattle respond to sloped floors? An investigation using behavior and electromyograms

机译:牛如何应对倾斜的地板?使用行为和肌电图进行调查

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摘要

On dairy farms, flooring is often sloped to facilitate drainage. Sloped floors have been identified as a possible risk factor for lameness, but relatively little is known about how this flooring feature affects dairy cattle. Ours is the first study to evaluate the short-term effects of floor slope on skeletal muscle activity, restless behavior (measured by number of steps), and latency to lie down after 90 min of standing. Sixteen Holstein cows were exposed to floors with a 0, 3, 6, or 9% slope in a crossover design, with a minimum of 45 h between each testing session. Electromyograms were used to evaluate the activity of middle gluteal and biceps femoris muscles. Muscle activity was evaluated in 2 contexts: (1) static muscle contractions when cows continuously transferred weight to each hind leg, before and after 90 min of standing; and (2) dynamic contractions that occurred during 90 min of treatment exposure. Median power frequency and median amplitude of both static and dynamic muscle electrical signals were calculated. Total muscle activity was calculated using the root mean square of the signals. Restless behavior, the number of steps per treatment, steps and kicks in the milking parlor, and the latency to lie down after the test sessions were also measured. It was predicted that restless behavior, muscle fatigue (as measured by median power frequency and median amplitude), total muscle activity, and latency to lie down after testing would increase with floor slope. However, no treatment differences were found. Median power frequency was significantly greater for the middle gluteal muscle [35 ± 4 Hz (mean and SE)] compared with the biceps femoris muscle (24 ± 3 Hz), indicating that the contractive properties of these muscles differ. The number of steps per minute and total muscle activity increased significantly over 90 min of standing, irrespective of floor slope. Although restless behavior and muscle function did not change with slope in our study, this work demonstrates that electromyograms can be used to measure skeletal leg muscle activity in cattle. This technology, along with restless behavior, could be useful in assessing cow comfort in other situations, such as prolonged standing.
机译:在奶牛场,地板通常会倾斜以利于排水。倾斜的地板已被确定为可能导致la行的危险因素,但对于这种地板功能如何影响奶牛的知之甚少。我们的研究是第一个评估地板坡度对骨骼肌活动,躁动行为(通过步数衡量)和站立90分钟后躺下的潜伏期的短期影响的研究。在交叉设计中,将16头荷斯坦奶牛暴露在坡度为0、3、6或9%的地板上,每次测试之间至少间隔45小时。肌电图用于评估中臀肌和股二头肌的活性。在2种情况下评估了肌肉活动:(1)站立90分钟之前和之后,当母牛不断向每条后腿转移重量时,静态肌肉收缩; (2)在治疗暴露90分钟期间发生的动态收缩。计算了静态和动态肌肉电信号的中值功率频率和中值幅度。使用信号的均方根计算总肌肉活动。还测量了躁动不安的行为,每次治疗的步数,挤奶厅的步数和踢动次数以及测试阶段后躺下的潜伏期。据预测,测试后躁动行为,肌肉疲劳(通过中值功率频率和中值幅度来衡量),总肌肉活动以及躺下的潜伏时间会随着地面坡度而增加。但是,未发现治疗差异。与股二头肌(24±3 Hz)相比,中臀肌的中位功率频率显着更高(35±4 Hz(平均值和标准误差)),表明这些肌肉的收缩特性有所不同。站立时90分钟,每分钟步数和总肌肉活动均显着增加,而与地面坡度无关。尽管在我们的研究中躁动不安和肌肉功能并未随坡度变化,但这项工作表明肌电图可用于测量牛的骨骼肌。这项技术以及不安定的行为,对于评估其他情况(例如长时间站立)下的奶牛舒适度可能很有用。

著录项

  • 来源
    《Journal of dairy science》 |2014年第5期|2808-2815|共8页
  • 作者

    E. Rajapaksha; C. B. Tucker;

  • 作者单位

    Department of Animal Science, University of California, Davis 95616;

    Department of Animal Science, University of California, Davis 95616;

  • 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

    slope; restless behavior; electromyogram; muscle fatigue;

    机译:坡;不安的行为;肌电图肌肉疲劳;

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