LeBlanc Chantal, Tobalske Bret, Szkotnicki Bill, Harlander-Matauschek Alexandra
Department of Animal Biosciences, University of Guelph, Guelph, ON, Canada.
Division of Biological Sciences, University of Montana, Missoula, MT, United States.
Front Vet Sci. 2018 Jan 10;4:233. doi: 10.3389/fvets.2017.00233. eCollection 2017.
Keel bone damage (KBD) is prevalent in hens raised for egg production, and ramps between different tiers in aviaries have potential to reduce the frequency of falls resulting in KBD. Effective use of ramps requires modulation of locomotion in anticipation of the incline. Inadequate adaptive locomotion may be one explanation why domestic layer hens () exhibit high rates of KBD. To improve understanding of the capacity of hens to modulate their locomotion in anticipation of climbing, we measured the effects of incline angle upon the mechanics of the preparatory step before ascending a ramp. Because the energetic challenge of climbing increases with slope, we predicted that as angle of incline increased, birds during foot contact with the ground before starting to climb would increase their peak force and duration of contact and reduce variation in center of pressure (COP) under their foot. We tested 20 female domestic chickens on ramp inclines at slopes of +0°, +40°, and +70° when birds were 17, 21, 26, 31, and 36 weeks of age. There were significantly higher vertical peak ground reaction forces in preparation at the steepest slope, and ground contact time increased significantly with each increase in ramp angle. Effects upon variation in COP were not apparent; likewise, effects of limb length, age, body mass were not significant. Our results reveal that domestic chickens are capable of modulating their locomotion in response to incline angle.
龙骨损伤(KBD)在蛋鸡养殖中很普遍,禽舍不同层级之间的斜坡有可能降低导致KBD的跌倒频率。有效利用斜坡需要在预期坡度时调节运动。适应性运动不足可能是蛋鸡KBD发生率高的一个原因。为了更好地理解母鸡在预期攀爬时调节运动的能力,我们测量了倾斜角度对爬坡前准备步骤力学的影响。由于攀爬的能量挑战随坡度增加,我们预测随着倾斜角度增加,开始攀爬前脚接触地面的鸡会增加其峰值力和接触持续时间,并减少脚下压力中心(COP)的变化。我们在鸡17、21、26、31和36周龄时,对20只雌性家鸡在坡度为+0°、+40°和+70°的斜坡上进行了测试。在最陡坡度时准备阶段的垂直峰值地面反作用力显著更高,并且随着斜坡角度每次增加,地面接触时间显著增加。对COP变化的影响不明显;同样,肢体长度、年龄、体重的影响也不显著。我们的结果表明,家鸡能够根据倾斜角度调节其运动。