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跳马运动员起跳和着陆时四肢所承受的外部负荷。

External loads on the limbs of jumping horses at take-off and landing.

作者信息

Schambardt H C, Merkens H W, Vogel V, Willekens C

机构信息

Department of Veterinary Anatomy, Faculty of Veterinary Medicine, University of Utrecht, The Netherlands.

出版信息

Am J Vet Res. 1993 May;54(5):675-80.

PMID:8317758
Abstract

Using a force plate, ground reaction force (GRF) patterns at take-off and landing between the hooves and the ground were recorded for all limbs of 5 Dutch Warmbloods jumping a 0.8-m vertical fence from the right-leading canter. Distribution of the GRF and force impulses over the 4 limbs at take-off and landing were considerably different from those recorded at the normal canter. At take-off, the propulsory GRF of the hind limbs were 3 to 5 times higher than at the normal canter, depending on the jumping technique of the horse. At landing, the propulsory GRF were mainly increased in the trailing forelimb and in both hind limbs. The vertical GRF amplitudes and force impulses were of similar magnitude to those at the canter, although increases up to 160% were found in the hind limbs of the horse with the worst jumping technique. The trailing forelimb carried the highest loads, up to twice the animal's body weight; GRF amplitudes tended to increase when higher fences were used. However, the jumping technique of the horse may have more influence, because an easily jumping horse could clear a 1.3-m-high fence with similar loads on the limbs.

摘要

使用测力板,记录了5匹荷兰温血马从右前导跑步起跳越过0.8米垂直障碍时各肢体在起跳和着陆瞬间蹄与地面之间的地面反作用力(GRF)模式。起跳和着陆时4条肢体上GRF和力冲量的分布与正常跑步时记录的情况有很大不同。起跳时,后肢的推进性GRF比正常跑步时高3至5倍,具体取决于马匹的跳跃技术。着陆时,推进性GRF主要在落后的前肢和两条后肢中增加。垂直GRF幅度和力冲量与跑步时的幅度和冲量相似,不过跳跃技术最差的马匹后肢中发现增加幅度高达160%。落后的前肢承受的负荷最高,可达动物体重的两倍;使用更高的障碍时,GRF幅度往往会增加。然而,马匹的跳跃技术可能有更大影响,因为一匹容易跳跃的马可以在肢体承受相似负荷的情况下越过1.3米高的障碍。

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