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首页> 外文期刊>Journal of Biomechanics >Vertical forces on the horse's back in sitting and rising trot.
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Vertical forces on the horse's back in sitting and rising trot.

机译:坐骑和小跑中马背上的垂直力。

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摘要

In equestrian sports, it is generally assumed that rising and sitting trot load the horse's back differently. The objective of this study was to quantify the load on the horse's back in these riding techniques. Kinematic data of 13 riders were collected in rising and sitting trot. The time-history of the position of the rider's centre of mass (CoM) was calculated, and differentiated twice to obtain the acceleration of the CoM. The reaction force between the rider and the horse's back was calculated from the acceleration. Forces were divided by the body weight of the rider to obtain dimensionless forces. As expected, the computed average vertical force did not differ between riding techniques and was not significantly different from the body weight of the riders. At trot, two force peaks were present during one stride cycle. Both peaks in rising trot were significantly lower compared to sitting trot (peak 1: 2.54+/-0.30 versus 2.92+/-0.29; p<0.001; peak 2: 1.95+/-0.34 versus 3.03+/-0.32; p<0.001). This supports the general assumption that rising trot is less demanding for the horse than sitting trot.
机译:在马术运动中,通常假定小跑的上升和坐姿对马背的负荷不同。这项研究的目的是量化这些骑术中马背的负担。在上升和坐下小跑中收集了13个骑手的运动数据。计算出驾驶员的质心(CoM)位置的时间历史,并进行两次微分以获得CoM的加速度。根据加速度计算出骑手与马背之间的反作用力。力除以骑手的体重即可获得无量纲的力。不出所料,所计算出的平均垂直力在两种骑行技术之间没有差异,与骑手的体重也没有显着差异。小跑时,在一个步幅周期中出现两个力峰值。与坐着小跑相比,上升小跑的两个峰值均显着降低(峰值1:2.54 +/- 0.30对2.92 +/- 0.29; p <0.001;峰值2:1.95 +/- 0.34对3.03 +/- 0.32; p <0.001 )。这支持了一般假设,即小跑对马的要求比坐小对马的要求低。

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