Hobbs Sarah J, Clayton Hilary M
Centre for Applied Sport and Exercise Sciences, University of Central Lancashire, Preston, Lancashire, UK.
McPhail Equine Performance Center, Department of Large Animal Clinical Sciences, D202 Veterinary Medical Center, Michigan State University, East Lansing, MI 48824, USA.
Vet J. 2013 Dec;198 Suppl 1:e14-9. doi: 10.1016/j.tvjl.2013.09.027. Epub 2013 Sep 26.
The aims of this study were to measure ground reaction forces (GRFs) of concurrently loaded limbs and to evaluate spatial relationships between the centre of pressure (COP) and centre of mass (COM) in trotting horses. Kinematic (120Hz) and GRF data were collected at trot from three trials of eight horses using four force plates (960 Hz). Forelimb and hind limb GRFs were measured, COP was calculated from the resultant vertical GRF vector and COM was calculated by summation of weighted segmental COMs. Peak total vertical force (19.3 ± 1.3N/kg at 45.1 ± 2.3% diagonal stance) coincided with zero total longitudinal force (45.1 ± 2.4% stance). Initially, COP position corresponded with the fore or hind hoof of the diagonal that contacted the ground earlier. During diagonal overlap, COP position reflected forelimb contribution to total vertical GRF; it maintained a fairly constant position relative to the base of support through the middle part of stance, then moved cranially in the last third of stance towards the fore hoof, which was always the last hoof to leave the ground. The COM moved forward continuously; its longitudinal velocity decreased with the net braking force in early stance and increased with the net propulsive force in late stance. The COM was caudal to the COP in early stance, coincident at 35.8 ± 4.4% stance and was maximally ahead of the COP at 67.6 ± 4.8% stance. Changes in the spatial relationship between COP and COM affect the moment arms of the forelimb and hind limb vertical GRFs and their effect in generating a pitching torque around the COM.
本研究的目的是测量同时负重肢体的地面反作用力(GRF),并评估小跑马匹中压力中心(COP)与质心(COM)之间的空间关系。使用四个测力板(960Hz),在八匹马的三次小跑试验中收集了运动学数据(120Hz)和GRF数据。测量了前肢和后肢的GRF,根据合成的垂直GRF向量计算COP,并通过加权节段COM的总和计算COM。峰值总垂直力(在45.1±2.3%对角站立时为19.3±1.3N/kg)与总纵向力为零(45.1±2.4%站立)同时出现。最初,COP位置与较早接触地面的对角的前蹄或后蹄相对应。在对角重叠期间,COP位置反映了前肢对总垂直GRF的贡献;它在站立的中间部分相对于支撑基部保持相当恒定的位置,然后在站立的最后三分之一向头侧移动,朝向总是最后离开地面的前蹄。COM持续向前移动;其纵向速度在站立早期随着净制动力而降低,在站立后期随着净推进力而增加。COM在站立早期位于COP的尾侧,在35.8±4.4%站立时重合,在67.6±4.8%站立时最大程度地领先于COP。COP和COM之间空间关系的变化会影响前肢和后肢垂直GRF的力臂及其在围绕COM产生俯仰扭矩方面的作用。