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评估在混凝土跑道上慢步时,带有和不带有牵引装置的马蹄铁对非跛行马步态动力学的影响。

Assessment of the effect of horseshoes with and without traction adaptations on the gait kinetics of nonlame horses during a trot on a concrete runway.

出版信息

Am J Vet Res. 2021 Apr;82(4):292-301. doi: 10.2460/ajvr.82.4.292.

Abstract

OBJECTIVE

To assess the effect of horseshoes with and without traction adaptations on the gait kinetics of nonlame horses during a trot on a concrete runway.

ANIMALS

5 nonlame adult light-breed horses.

PROCEDURES

Kinetic data were obtained for each horse when it was trotted across a force platform within a concrete runway unshod (control) and shod with standard horseshoes; standard horseshoes with high profile-low surface area calks, with low profile-high surface area calks, and coated with a thin layer of tungsten carbide (TLTC); and plastic-steel composite (PSC) horseshoes. Kinetic data were obtained for the control treatment first, then for each of the 5 shoe types, which were applied to each horse in a random order. Kinetic variables were compared among the 6 treatments.

RESULTS

Body weight distribution did not differ among the 6 treatments. Compared with the control, the greatest increase in forelimb peak vertical force was observed when horses were shod with PSC shoes. In the hind limbs, the greatest increase in peak braking force was observed when horses were shod with PSC shoes, followed by the TLTC and low profile-high surface area calked shoes. The PSC shoes yielded the greatest coefficient of friction in both the forelimbs and hind limbs. Stance time was longest when horses were shod with standard shoes.

CONCLUSIONS AND CLINICAL RELEVANCE

Results suggested that PSC and TLTC shoes provided the best hoof protection and traction and might be good options for horses that spend a large amount of time traversing paved surfaces.

摘要

目的

评估无牵引改造和有牵引改造的马蹄铁对非跛行马在混凝土跑道上小跑时步态动力学的影响。

动物

5 匹非跛行成年轻型马。

程序

当每匹马在混凝土跑道上的力平台上无蹄(对照)和装有标准马蹄铁时;装有高轮廓-低表面积蹄铁、低轮廓-高表面积蹄铁且涂有一层薄碳化钨(TLTC)的标准马蹄铁;以及塑料-钢复合材料(PSC)马蹄铁时,为每匹马获取动力学数据。首先为对照处理获取动力学数据,然后以随机顺序将 5 种鞋型中的每一种应用于每匹马,然后获取动力学数据。比较 6 种处理方法的动力学变量。

结果

6 种处理方法之间的体重分布没有差异。与对照相比,当马穿上 PSC 鞋时,前肢最大峰值垂直力增加最大。在后肢中,当马穿上 PSC 鞋时,最大峰值制动力增加最大,其次是 TLTC 和低轮廓-高表面积蹄铁。PSC 鞋在前肢和后肢产生的摩擦系数最大。当马穿上标准鞋时,站立时间最长。

结论和临床相关性

结果表明,PSC 和 TLTC 鞋提供了最好的蹄保护和牵引力,对于花费大量时间在铺砌表面上的马来说可能是不错的选择。

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