Agroscope, Animal GenoPhenomics, Posieux, Switzerland; Equine Department, Vetsuisse Faculty University of Zurich, Zurich, Switzerland.
Equine Department, Vetsuisse Faculty University of Zurich, Zurich, Switzerland.
J Equine Vet Sci. 2022 Aug;115:104024. doi: 10.1016/j.jevs.2022.104024. Epub 2022 May 29.
Ground coverage and over-tracking are two gait quality traits describing the forward movement of the front respectively the hind limbs in relation to stride length and over-tracking distance. To investigate the complex interplay of different movement patterns in ground coverage and over-tracking, limb and body kinematics of 24 Franches-Montagnes (FM) stallions were measured with 3D optical motion capture (OMC) on a treadmill during an incremental speed test at the walk (1.4-2.0 m/s). The significance and amount of explained variance of kinematic parameters on stride length and over-tracking distance were estimated using linear mixed-effect models, with speed and horse as random effects. Two separate models were tested: a full model with all parameters measurable by OMC, and a reduced model with a subset of parameters also measurable with inertial measurement units (IMUs). The kinematic parameters were correlated to the subjective scores from six breeding experts to interpret their external validity. The parameter for ground coverage at the walk, explaining most of the variance in stride length, were the maximal forelimb retraction angle (11%) measured with OMC, and the range of pelvis pitch (10%) if measuring with IMUs. The latter was also the most relevant for quantifying over-tracking, explaining 24% to 33% of the variance in the over-tracking distance. The scores from most breeding experts were significantly correlated (r ≥ |0.41|) with the fore- and hind limb protraction angles, which reflect the textual definition of ground coverage and over-tracking. Both gait quality traits can be objectively quantified using either OMC or IMUs.
着地覆盖度和过度跟踪是两个描述前肢和后肢相对于步长和过度跟踪距离的向前运动的步态质量特征。为了研究着地覆盖度和过度跟踪中不同运动模式的复杂相互作用,使用 3D 光学运动捕捉(OMC)在跑步机上对 24 匹弗朗什-蒙塔涅(FM)种马进行了测量,在步行时(1.4-2.0 m/s)进行了递增速度测试。使用线性混合效应模型,以速度和马为随机效应,估计了运动学参数对步长和过度跟踪距离的显著性和解释方差量。测试了两个单独的模型:一个具有 OMC 可测量的所有参数的完整模型,以及一个具有惯性测量单元(IMU)也可测量的部分参数的简化模型。将运动学参数与六位繁殖专家的主观评分相关联,以解释其外部有效性。在步行时,解释步长变化最大的着地覆盖度的运动学参数是用 OMC 测量的最大前肢缩回角度(11%),以及用 IMU 测量的骨盆俯仰范围(10%)。后者也是定量过度跟踪的最相关参数,解释了过度跟踪距离变化的 24%至 33%。大多数繁殖专家的评分与前肢和后肢的伸肌角度显著相关(r≥|0.41|),这反映了着地覆盖度和过度跟踪的文字定义。这两个步态质量特征都可以使用 OMC 或 IMU 进行客观地量化。