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首页> 外文期刊>Physiological Reports >High‐intensity training in normobaric hypoxia enhances exercise performance and aerobic capacity in Thoroughbred horses: A randomized crossover study
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High‐intensity training in normobaric hypoxia enhances exercise performance and aerobic capacity in Thoroughbred horses: A randomized crossover study

机译:正常缺氧中的高强度训练提高了纯种马的运动性能和有氧能力:随机交叉研究

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We examined the effects of high‐intensity training in normobaric hypoxia on aerobic capacity and exercise performance in horses and the individual response to normoxic and hypoxic training. Eight untrained horses were studied in a randomized, crossover design after training in hypoxia (HYP; 15.0% inspired O2) or normoxia (NOR; 20.9% inspired O2) 3?days/week for 4?weeks separated by a 4‐month washout period. Before and after each training period, incremental treadmill exercise tests were performed in normoxia. Each training session consisted of 1?min cantering at 7?m/s and 2?min galloping at the speed determined to elicit maximal oxygen consumption (O2max) in normoxia. Hypoxia increased significantly more than NOR in run time to exhaustion (HYP, +28.4%; NOR, +10.4%, p?=?.001), O2max (HYP, +12.1%; NOR, +2.6%, p?=?.042), cardiac output (; HYP, +11.3%; NOR, ?1.7%, p?=?.019), and stroke volume (SV) at exhaustion (HYP, +5.4%; NOR, ?5.5%, p?=?.035) after training. No significant correlations were observed between NOR and HYP for individual changes after training in run time (p?=?.21), O2max (p?=?.99), (p?=?.19), and SV (p?=?.46) at exhaustion. Arterial O2 saturation during exercise in HYP was positively correlated with the changes in run time (r?=?.85, p?=?.0073), (r?=?.72, p?=?.043) and SV (r?=?.77, p?=?.026) of HYP after training, whereas there were no correlations between these parameters in NOR. These results suggest that high‐intensity training in normobaric hypoxia improved exercise performance and aerobic capacity of horses to a greater extent than the same training protocol in normoxia, and the severity of hypoxemia during hypoxic exercise might be too stressful for poor responders to hypoxic training.
机译:我们研究了高强度训练在正常性缺氧对马匹的运动能力和运动性能方面的影响以及对常氧和缺氧训练的个体反应。在缺氧(Hyp; 15.0%的o2)或常规(NOR; 20.9%灵感O2)训练后,在随机的交叉设计中进行了八个未经训练的马匹3?天/周为4?几周,分隔4个月的洗涤期。在每个训练期之前和之后,在常氧中进行增量跑步机运动测试。每个训练会议组成为1?min延迟7?m / s和2?min的速度,以确定常氧的最大氧消耗(O2max)。缺氧大于耗尽(百下+ 28.4%的运行时间大于也不显着增加,+ 10.4%,p?=β=α.001),O2max(百下+ 12.1%;也不,+ 2.6%,p?=? .042),心输出(;百下,+ 11.3%;也不是,α1.7%,p?=α.019)和耗尽时的卒中体积(sv)(百下+ 5.4%;也不,?5.5%,p训练后?= ?. 035)。在运行时间训练后的单个变化不具有显着的相关性(P?=Δ2),O2max(p?=Δ.99),(p?= 39)和sv(p? = ?. 46)在疲惫时。在vish运动期间的动脉O2饱和度与运行时间的变化呈正相关(R?= ?. 85,p?= 0073),(r?=α.72,p?=Δ.043)和sv( r?= ?. 77,p?=Δs.026)培训后的次数,而这些参数与这些参数之间没有相关性。这些结果表明,常规缺氧的高强度培训在更大程度上提高了马匹的运动性能和有氧能力,而不是常氧中的相同培训方案,并且缺氧运动期间的缺氧血症的严重程度可能对贫困人员对缺氧训练的贫困人口来说太紧张。

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