纯种赛马骑师的身体素质

Kylie A. Legg, Darryl J. Cochrane, Erica K. Gee, Yin Y. Chin, Chris W. Rogers
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摘要

摘要目的纯种赛马骑师在一项摔倒和受伤风险高的运动中以最大的生理能力进行比赛。更好地了解决定骑师表现的身体能力可能会导致最小的身体表现参数和纠正干预措施,以提高骑师的健康和表现,减少骑师和马的伤害。本研究的目的是为骑师制定适当的体能测试程序和不同执照级别的体能概况。方法对58名骑师(n = 24名女性,n = 34名男性)和11名专业骑师(14%)进行评估,以确定基线生理和健康数据。这些骑师代表了2021年在新西兰获得执照的所有学徒骑师(100%,n = 8名见习骑师和n = 39名学徒)。描述性统计和箱形图用于比较不同许可水平的有氧适能、腹部(核心)、上半身和下半身力量、肌肉力量、反应时间、柔韧性和针对下半身力量、平衡和耐力的新型“马鞍”测试。效应量(Effect Size, ES)用于确定组间差异的大小。结果经验丰富的骑师下体相对力量(ES = 0.2 ~ 0.7)和平衡能力(ES = 0.5 ~ 0.9)明显优于经验不足的骑师。排名前20位的骑师反应速度更快(ES = 0.7),核心伸肌力量更强(ES = 0.7)。大多数测试显示骑师执照水平之间的差异不大,然而“马鞍测试”显示经验不足的骑手差异更大。这项测试可能是衡量骑师基线表现的有效方法。结论这些数据可以用于指导最低骑师执照要求和未来的体能训练计划,以提高骑师的生理健康,从而最大限度地减少由于生理缺陷和表现而导致的跌倒或受伤的风险。
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Physical Fitness of Thoroughbred Horse Racing Jockeys
Abstract Purpose Thoroughbred racing jockeys compete at maximum physiological capacity in a sport with a high risk of falls and injury. A greater understanding of the physical capacities determining jockey performance may lead to minimum physical performance parameters and corrective interventions to improve jockey fitness and performance and reduce jockey and horse injury. The aim of this study was to develop appropriate physical testing procedures for jockeys and a physical fitness profile for different licence levels. Methods Fifty-eight jockeys ( n = 24 females, n = 34 males), representing all apprentice jockeys licenced in New Zealand in 2021 (100%, n = 8 probationers and n = 39 apprentices) and eleven professional jockeys (14%) were assessed to determine baseline physiological and fitness data. Descriptive statistics and boxplots were used to compare aerobic fitness, abdominal (core), upper and lower body strength, muscular power, reaction time, flexibility and a novel ‘saddle’ test targeting lower body strength, balance, and endurance between licencing levels. Effect Size (ES) was used to determine magnitude of differences between groups. Results More experienced jockeys had greater relative lower body strength (ES = 0.2–0.7) and better balance (ES = 0.5–0.9) compared to the less experienced groups. Jockeys who were in the top 20 of the premiership table (jockey rankings) had faster reaction times (ES = 0.7) and greater core extensor strength (ES = 0.7) than other cohorts. Most tests showed little differentiation between jockey licence levels, however the ‘saddle test’ showed greater variability in the less experienced race riders. This test may be an effective measure of jockey baseline performance. Conclusions These data could be used to inform minimum jockey licencing requirements and future physical fitness training programmes to increase jockey physiological fitness, thereby minimising risk of falls or injury due to physiological deficits and performance.
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