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地面反作用力的陆上疾驰在骑乘纯种赛马。

Ground reaction forces of overground galloping in ridden Thoroughbred racehorses.

机构信息

Structure and Motion Lab, The Royal Veterinary College, University of London, Hawkshead Lane, North Mymms, Hatfield, Hertfordshire, AL9 7TA, UK.

Structure and Motion Lab, The Royal Veterinary College, University of London, Hawkshead Lane, North Mymms, Hatfield, Hertfordshire, AL9 7TA, UK

出版信息

J Exp Biol. 2019 Aug 23;222(Pt 16):jeb204107. doi: 10.1242/jeb.204107.

Abstract

The horse has evolved to gallop economically at high speed. Limb force increases with speed but direct measures of limb ground reaction forces (GRFs) at gallop are sparse. This study reports GRFs for multiple limbs, using force plates, across seven Thoroughbred racehorses during ridden galloping. The results show peak vertical GRF values of 13.6 N kg (non-lead hindlimb), 12.3 N kg (lead hindlimb), 14.0 N kg (non-lead forelimb) and 13.6 N kg (lead forelimb) at 11.4 m s and recorded values are consistent with those predicted from duty factor. The distribution of body weight between the forelimbs and hindlimbs is approximated to 50:50, and is variable with speed, unlike the 60:40 commonly stated for cursorial quadrupeds in the literature. An even distribution of load on all limbs may help minimise accumulation of fatigue and assist in injury avoidance. Cranio-caudal force data concur with the observation that horses apply a net accelerative impulse with the hindlimbs and a net decelerative impulse with the forelimbs. Capturing GRFs enhances our knowledge on the mechanics of galloping in fast-moving species and provides insight into injury risk and factors limiting athletic performance.

摘要

马已经进化到能够以高速经济地奔跑。随着速度的增加,肢体力量会增加,但对奔跑时肢体地面反作用力(GRF)的直接测量却很少。本研究使用测力板报告了 7 匹纯种赛马在骑乘奔跑时多条肢体的 GRF。结果显示,在 11.4m/s 的速度下,非主导后肢的垂直 GRF 值峰值为 13.6N/kg,主导后肢为 12.3N/kg,非主导前肢为 14.0N/kg,主导前肢为 13.6N/kg,这些值与从功因预测的值一致。前肢和后肢之间的体重分布近似为 50:50,并且随速度变化,这与文献中通常为 60:40 的四足奔跑动物不同。所有肢体的负荷均匀分布可能有助于最小化疲劳的积累,并有助于避免受伤。头-尾方向的力数据与以下观察结果一致,即马在后肢施加净加速冲量,在前肢施加净减速冲量。捕捉 GRF 增强了我们对快速移动物种奔跑力学的了解,并深入了解了受伤风险和限制运动表现的因素。

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