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Detection of jumping and landing force in laying hens using wireless wearable sensors

机译:使用无线可穿戴传感器检测蛋鸡的跳跃和着陆力

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摘要

Increased mobility of hens in noncaged housing presents possibilities for bone breakage due to crash landings from jumps or flights between perches or housing infrastructure. Because bone breakage is a welfare and economic concern, understanding how movement from different heights affects hen landing impact is important. By tracking 3-dimensional bird movement, an automated sensor technology could facilitate understanding regarding the interaction between noncage laying hens and their housing. A method for detecting jumps and flight trajectories could help explain how jumps from different heights affect hen landing impact. In this study, a wearable sensor-based jump detection mechanism for egg-laying hens was designed and implemented. Hens were fitted with a lightweight (10 g) wireless body-mounted sensor to remotely sample accelerometer data. Postprocessed data could detect occurrence of jumps from a perch to the ground, time of jump initiation, time of landing, and force of landing. Additionally, the developed technology could estimate the approximate height of the jump. Hens jumping from heights of 41 and 61 cm were found to land with an average force of 81.0 +/- 2.7 N and 106.9 +/- 2.6 N, respectively, assuming zero initial velocity (P < 0.001). This paper establishes the technological feasibility of using body-mounted sensor technology for jump detection by hens in different noncage housing configurations.
机译:由于笼子或房屋基础设施之间的跳跃或飞行造成的坠落事故,母鸡在非笼养房屋中活动性的增加会导致骨折的可能性。由于骨折是一种福利和经济问题,因此了解不同高度的运动如何影响母鸡着陆很重要。通过跟踪3维鸟类的运动,自动传感器技术可以促进对非笼养蛋鸡与其家禽之间相互作用的了解。一种检测跳跃和飞行轨迹的方法可以帮助解释不同高度的跳跃对母鸡着陆的影响。在这项研究中,设计并实现了基于可穿戴传感器的产蛋母鸡跳跃检测机制。母鸡配备了重量轻(10 g)的无线人体安装传感器,可远程采样加速度计数据。经过后处理的数据可以检测到从高处到地面的跳跃,跳跃开始的时间,着陆时间和着陆力。此外,开发的技术可以估计跳跃的近似高度。假定初始速度为零(P <0.001),发现从41和61厘米高处跳跃的母鸡落下时的平均力分别为81.0 +/- 2.7 N和106.9 +/- 2.6N。本文确定了在不同的非笼状外壳配置中,将机载传感器技术用于母鸡跳跃检测的技术可行性。

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    《Poultry Science》 |2014年第11期|共10页
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