Chateau Henry, Robin Damien, Simonelli Thomas, Pacquet Laurent, Pourcelot Philippe, Falala Sylvain, Denoix Jean-Marie, Crevier-Denoix Nathalie
UMR 957 (INRA, ENVA) Biomécanique et Pathologie Locomotrice du Cheval, Ecole Nationale Vétérinaire d'Alfort, 7, avenue du Général de Gaulle 94704, Maisons-Alfort, France.
J Biomech. 2009 Feb 9;42(3):336-40. doi: 10.1016/j.jbiomech.2008.11.017. Epub 2009 Jan 10.
Properties of ground surfaces condition locomotion, and quality of track surfaces is believed to be involved in the pathogenesis of many musculoskeletal injuries in the horse. Measuring ground reaction forces (GRF) is an interesting approach to assess those interactions. Forceplates are the most commonly used but they are not well suited to compare different ground surfaces at fast gaits. Embarked equipment, fixed under the horse's hoof, would allow force measurement on any track. The objective of this work was (1) to design a device which enables the measurement of 3-D GRF on any ground, at any gait, for a given subject, (2) to determine its accuracy, and (3) to evaluate its performance and usefulness under physiological conditions. The resulting dynamometric horseshoe was composed of 4 piezoelectric sensors sandwiched between 2 aluminium plates designed at the shape of an equine shoe. The measurements, evaluated after a quasi-static calibration, revealed that the root mean square error was 1.3% in the normal direction, and 3.1% in the transversal direction. In vivo tests at the walk and trot in straight line and at the trot on circles, were conducted on 3 different ground surfaces. The results demonstrate that this dynamometric horseshoe is well suited to study the effects of different ground surfaces on GRF in the moving horse.
地面特性影响运动,而赛道表面质量被认为与马匹许多肌肉骨骼损伤的发病机制有关。测量地面反作用力(GRF)是评估这些相互作用的一种有趣方法。测力板是最常用的,但它们不太适合在快速步态下比较不同的地面。安装在马蹄下的设备将能够在任何赛道上测量力。这项工作的目的是:(1)设计一种装置,能够在任何地面、任何步态下为给定的受试者测量三维GRF;(2)确定其准确性;(3)评估其在生理条件下的性能和实用性。由此产生的测力马蹄由夹在两块设计成马蹄形状的铝板之间的4个压电传感器组成。在进行准静态校准后评估测量结果,发现法向方向的均方根误差为1.3%,横向方向为3.1%。在3种不同的地面上进行了直线行走和小跑以及圆周小跑的体内测试。结果表明,这种测力马蹄非常适合研究不同地面表面对运动中马匹GRF的影响。