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栖木位置会影响蛋鸡的运动以及龙骨所承受的力。

Perch Positioning Affects both Laying Hen Locomotion and Forces Experienced at the Keel.

作者信息

Rufener Christina, Rentsch Ana K, Stratmann Ariane, Toscano Michael J

机构信息

Center for Animal Welfare, Department of Animal Science, University of California, Davis, CA 95616, USA.

Center for Proper Housing: Poultry and Rabbits, Animal Welfare Division, University of Bern, 3052 Zollikofen, Switzerland.

出版信息

Animals (Basel). 2020 Jul 18;10(7):1223. doi: 10.3390/ani10071223.

Abstract

The aim of this study was to assess the effect of perch positioning on laying hens' locomotion and the resulting energy experienced at the keel. Twenty Nick Chick and 20 Brown Nick hens were trained to transition from a platform to a perch in several configurations. Three variables of perch positioning were tested in a 2 × 2 × 2 factorial design: direction (upward vs. downward), angle (flat vs. steep), and distance (50 cm vs. 100 cm). All hens were tested for five jumps of each treatment combination at 27-28 weeks of age. As predicted, we found steep angles and long distances to result in higher peak forces and impulse during take-off, flight, and landing; longer latency to jump; a higher likelihood to perform balancing movements; and a longer latency to peck at the provided food reward. The effect of perch positioning on locomotion and force at the keel during downwards jumps and flight was more pronounced in Brown Nick hens than in Nick Chick hens. Although we cannot state how the observed forces at the keel relate to the risk for keel bone fractures, our results indicated that optimizing perch positioning can reduce accumulated forced at the keel and consequent risk for fracture due to unsuccessful transitions.

摘要

本研究的目的是评估栖木位置对蛋鸡运动的影响以及龙骨所承受的能量。20只尼克雏鸡和20只褐尼克母鸡接受训练,以几种不同的构型从平台过渡到栖木。在2×2×2析因设计中测试了栖木位置的三个变量:方向(向上与向下)、角度(水平与陡峭)和距离(50厘米与100厘米)。所有母鸡在27至28周龄时对每种处理组合进行五次跳跃测试。正如预测的那样,我们发现陡峭的角度和较长的距离会导致起飞、飞行和着陆过程中产生更高的峰值力和冲量;跳跃潜伏期更长;进行平衡动作的可能性更高;啄食提供的食物奖励的潜伏期更长。在向下跳跃和飞行过程中,栖木位置对褐尼克母鸡龙骨运动和受力的影响比对尼克雏鸡更明显。虽然我们无法说明在龙骨处观察到的力与龙骨骨折风险之间的关系,但我们的结果表明,优化栖木位置可以减少龙骨处积累的力以及因过渡不成功而导致的骨折风险。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/07d1/7401534/b0549ca44432/animals-10-01223-g001.jpg

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