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Effect of a unilateral hind limb orthotic lift on upper body movement symmetry in the trotting horse

机译:单侧后肢矫形器抬高对小跑马上身运动对称性的影响

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摘要

In trotting horses, movement asymmetry is associated with ground reaction force asymmetry. In humans, limb length differences influence contralateral force production. Here we investigate whether horses, in immediate reaction to limb length changes, show movement asymmetry adaptations consistent with reported force differences. Aim of this study was to quantify pelvic and compensatory head and withers movement asymmetry as a function of limb length changes after application of orthotic lifts. In this experimental study movement asymmetry of eleven trotting horses was calculated from vertical displacement of poll, withers, sacrum and left and right tuber coxae with inertial sensors. Horses were assessed in-hand under 5 conditions (all with hind limb boots): without orthotic lifts, and with a 15mm or 30mm orthotic lift applied to the left hind or right hind. A linear mixed model investigated the influence of orthotic lift condition (P<0.05, pairwise posthoc Bonferroni correction). Pelvic movement asymmetry showed increased pelvic downward movement during stance of the shorter limb and increased pelvic upward movement during and after stance of the longer limb (P<0.001) with asymmetry changes of 3-7mm (4-10mm) for 15mm (30mm) lifts. Hip hike (tuber coxae movement asymmetry) was unaffected (P = 0.348). Head and withers movement asymmetry were affected less consistently (2 of 3 respectively 1 of 3 head or withers parameters). The small sample size of the study reduced generalizability, no direct force measurements were conducted and only immediate effects of orthotic lifts were assessed with no re-assessments days or weeks after. Conclusions about mechanical consequences (weight bearing, pushoff) are based on published movement-force associations. Pelvic movement asymmetry with an artificial change in limb length through application of an orthotic lift indicates increased weight support with the shorter limb and increased pushoff with the longer limb. This may be of relevance for the management of horses with different hoof shapes between contralateral limbs, for example some chronically lame horse.
机译:在小跑马中,运动不对称与地面反作用力不对称相关。在人类中,肢体长度的差异会影响对侧力量的产生。在这里,我们调查马对肢体长度变化的即时反应是否显示出与报告的力差一致的运动不对称适应性。这项研究的目的是量化骨科和补偿性头和枯萎运动不对称性作为应用矫形器后肢体长度变化的函数。在这项实验研究中,通过惯性传感器根据民意测验,肩ers骨,骨和左右块茎的垂直位移计算了十一只小跑马的运动不对称性。在5种情况下(全部带后肢靴子)对马进行了手部评估:没有矫形器抬高,对左后或右后肢施加15mm或30mm矫正器抬高。线性混合模型研究了矫形提升条件的影响(P <0.05,成对事后Bonferroni校正)。骨盆运动不对称显示较短的肢体姿势期间骨盆向下运动增加,而较长的肢体姿势期间和之后骨盆向上运动增加(P <0.001),对于15mm(30mm)抬高,不对称性变化为3-7mm(4-10mm) 。髋关节抬高(臀大肌运动不对称)不受影响(P = 0.348)。头部和枯萎运动的不对称性受到的影响较小(分别为3分之2和3分之1的头部或枯萎参数)。研究的样本量较小,因此无法推广,没有进行直接的力测量,仅评估了矫形提升的即时效果,几天或几周后都没有进行重新评估。有关机械后果(负重,下垂)的结论基于已发布的运动力关联。骨盆运动不对称,通过矫形器抬高人为地改变肢体长度,表明较短肢体的体重支持增加,而较长肢体的俯卧肌增加。这可能与管理对侧肢体之间具有不同蹄形的马(例如某些长期some脚的马)有关。

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