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首页> 外文期刊>American Journal of Veterinary Research >Hoof accelerations and ground reaction forces of Thoroughbred racehorses measured on dirt, synthetic, and turf track surfaces.
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Hoof accelerations and ground reaction forces of Thoroughbred racehorses measured on dirt, synthetic, and turf track surfaces.

机译:在污垢,合成纤维和草皮赛道表面上测量的纯种赛马的蹄加速度和地面反作用力。

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OBJECTIVE: To compare hoof acceleration and ground reaction force (GRF) data among dirt, synthetic, and turf surfaces in Thoroughbred racehorses. ANIMALS: 3 healthy Thoroughbred racehorses. PROCEDURES: Forelimb hoof accelerations and GRFs were measured with an accelerometer and a dynamometric horseshoe during trot and canter on dirt, synthetic, and turf track surfaces at a racecourse. Maxima, minima, temporal components, and a measure of vibration were extracted from the data. Acceleration and GRF variables were compared statistically among surfaces. RESULTS: The synthetic surface often had the lowest peak accelerations, mean vibration, and peak GRFs. Peak acceleration during hoof landing was significantly smaller for the synthetic surface (mean + or - SE, 28.5g + or - 2.9g) than for the turf surface (42.9g + or - 3.8g). Hoof vibrations during hoof landing for the synthetic surface were < 70% of those for the dirt and turf surfaces. Peak GRF for the synthetic surface (11.5 + or - 0.4 N/kg) was 83% and 71% of those for the dirt (13.8 + or - 0.3 N/kg) and turf surfaces (16.1 + or - 0.7 N/kg), respectively. CONCLUSIONS AND CLINICAL RELEVANCE: The relatively low hoof accelerations, vibrations, and peak GRFs associated with the synthetic surface evaluated in the present study indicated that synthetic surfaces have potential for injury reduction in Thoroughbred racehorses. However, because of the unique material properties and different nature of individual dirt, synthetic, and turf racetrack surfaces, extending the results of this study to encompass all track surfaces should be done with caution.
机译:目的:比较纯种赛马中的污垢,合成物和草皮表面的蹄加速度和地面反作用力(GRF)数据。动物:3种健康的纯种赛马。程序:在赛马场上的泥土,人造和草皮赛道表面上小跑和慢跑时,用加速度计和测功马蹄测量前肢的蹄加速度和GRF。从数据中提取了最大值,最小值,时间分量和振动的量度。在表面之间对加速度和GRF变量进行统计比较。结果:合成表面通常具有最低的峰值加速度,平均振动和峰值GRF。合成材料表面(均值+或-SE,28.5g +或-2.9g)在草皮着陆过程中的峰值加速度明显小于草皮表面(42.9g +或-3.8g)。合成材料表面在蹄着陆过程中的蹄振动小于灰尘和草皮表面的蹄振动的70%。合成表面(11.5 +或-0.4 N / kg)的GRF峰值分别为污垢(13.8 +或-0.3 N / kg)和草皮表面(16.1 +或-0.7 N / kg)的83%和71% , 分别。结论和临床意义:在本研究中评估的与合成表面相关的相对较低的蹄加速度,振动和峰值GRF表示合成表面具有降低纯种赛马损伤的潜力。但是,由于独特的材料特性以及单个污垢,人造草皮和草皮跑道表面的不同性质,因此应谨慎地进行这项研究的结果以涵盖所有跑道表面。

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