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首页> 外文期刊>The Veterinary Journal >Girth pressure measurements reveal high peak pressures that can be avoided using an alternative girth design that also results in increased limb protraction and flexion in the swing phase.
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Girth pressure measurements reveal high peak pressures that can be avoided using an alternative girth design that also results in increased limb protraction and flexion in the swing phase.

机译:周长压力测量结果显示出高峰值压力,可以使用其他周长设计来避免,这也导致在摆动阶段肢体伸出和弯曲增加。

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摘要

Girths are frequently blamed for veterinary and performance problems, but research into girth/horse interaction is sparse. The study objectives were (1) to determine location of peak pressure under a range of girths, and (2) to compare horse gait between the horse's standard girth and a girth designed to avoid detected peak pressure locations. In the first part of the study, and following validation procedures, a calibrated pressure mat placed under the girth of 10 horses was used to determine the location of peak pressures. A girth was designed to avoid peak pressure locations (Girth F). In the second part, 20 elite horses/riders with no lameness or performance problem were ridden in Girth F and their standard girth (Girth S) in a double blind crossover design. Pressure mat data were acquired from under the girths. High speed video was captured and forelimb and hindlimb protraction, maximal carpal and tarsal flexion during flight were determined in trot. In standard girths, peak pressures were located over the musculature behind the elbow. Pressure mat results revealed that the maximum forces with Girth S were 22% (left) and 14% (right) greater than Girth F, and peak pressures were 76% (left) and 98% (right) greater (P<0.01 for all). On gait evaluation, Girth F was associated with 6-11% greater forelimb protraction, 10-20% greater hindlimb protraction, 4% greater carpal flexion, and 3% greater tarsal flexion than Girth S (P<0.01 for all). Peak pressures were located where horses tend to develop pressure sores. Girth F reduced peak pressures under the girth, and improved limb protraction and carpal/tarsal flexion, which may reflect improved posture and comfort.
机译:经常会因兽医和性能问题而指责肚带,但是对肚带/马互动的研究很少。研究目标是(1)确定一定围宽范围内的峰值压力位置,以及(2)比较马的标准围宽和旨在避免检测到峰值压力位置的围宽之间的步态。在研究的第一部分中,按照验证程序,将校准的压力垫放在10匹马的腰围下,以确定峰值压力的位置。围的设计避免出现峰值压力位置(围F)。在第二部分中,采用双盲交叉设计,将20头没有la足或性能问题的精英马/骑手骑在马肚带F和它们的标准马肚带(马肚带S)上。压力垫数据是从腰围下面获取的。捕获高速视频,并在小跑中确定飞行过程中前肢和后肢的前伸,最大腕骨和car屈。在标准周长中,峰值压力位于肘部后面的肌肉组织上。压力垫的结果显示,围带S的最大力比围带F大22%(左)和14%(右),峰值压力分别比大围F大76%(左)和98%(右)(所有P <0.01 )。在步态评估中,与Girth S相比,Girth F与前肢前伸比高6-11%,后肢前伸比高10-20%,腕屈比高4%,屈比高3%(P均<0.01)。峰值压力位于马易于产生褥疮的地方。肚带F降低了肚带下方的峰值压力,并改善了肢体的伸直度和腕/腕关节屈曲度,这可能反映了姿势和舒适度的提高。

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