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Forelimb Hoof Landing Velocities in Treadmill Trotting and Galloping Horses

机译:在跑步机小跑和疾驰的马匹的前肢蹄着陆速度

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摘要

Forelimb injury has been attributed to many factors. A key component to understanding the injury mechanisms is an accurate knowledge of hoof landing velocity and the ensuing kinematics of hoof strike. Five seconds of sagittal plane high-speed video were collected at 500 Hz from the right side of 22 mixed breed/grade horses while trotting and galloping on a treadmill. A reflective marker was placed on the center of the medial side of the hoof of the left forelimb with three hoof strikes digitized and averaged. Nine led with this limb during the gallop while 13 led with the right limb (treadmill speed trot = 4.4 m/s, gallop = 10.1 m/s). Differences were assessed at p < 0.05. Vertical hoof velocities at impact were significantly greater at gallop (-3.7+/-0.9 m/s) relative to trot (-1.9+/-0.5 m/s). No significant differences in vertical hoof velocity were found between lead and trail limb at either speed. Horizontal hoof velocity at impact was significantly greater in the lead limb (-7.4+/-1.4 m/s) relative to the trail limb (-5.6+/-1.5 m/s) at gallop as well as both being significantly greater than during the trot (-2.5+/-0.7 m/s). These results provide a starting point for both computer and mechanical models simulating hoof strike with the goal of reducing equine injuries.
机译:前肢伤害归因于许多因素。理解伤害机制的关键组成部分是对蹄撞击速度和随后的蹄罢工的动力学的准确了解。在22个混合品种/级马匹的右侧收集5秒的矢状平面高速视频,同时在跑步机上小跑和疾驰。将反射标记物放置在左前肢的蹄内侧的中心,其中三个蹄击打数字化并平均。九条LED在疾驰期间使用该肢体,而13个带有右侧肢的13架(跑步机速度= 4.4米/秒,GALLOP = 10.1米)。在P <0.05评估差异。相对于Trot(-1.9 +/- 0.5 m / s的疾病(-3.7 +/- 0.9 m / s)的垂直蹄速度明显更大(-3.7 +/- 0.9 m / s)。在铅和肢体之间没有在任一速度之间发现垂直蹄速度的显着差异。在疾驰(-7.4 +/- 1.4 m / s)中,撞击的水平蹄速度相对于疾驰(-5.6 +/- 1.5 m / s)在疾驰中显着更大,并且两者都明显大于期间小跑(-2.5 +/- 0.7 m / s)。这些结果为计算机和机械模型提供了模拟蹄罢工的起点,其目的是减少马伤。

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