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The Effects of Loaded Plyometric Exercise during Warm-Up on Subsequent Sprint Performance in Collegiate Track Athletes: A Randomized Trial

机译:加载尺寸运动在高校赛道运动员中随后冲刺性能的热身锻炼:随机试验

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摘要

Prior evidence demonstrates the efficacy by which plyometric activities during warm-up conditions augment the subsequent performance in power-centric exercise. We investigated the acute effects of loaded jump squats incorporated into a standard sprinters’ warm-up protocol on subsequent sprint performance in collegiate track athletes. Sprint times of 22 male and female collegiate track athletes were measured in 10-m intervals during a 30-m sprint trial following a standard sprinters’ warm-up routine with or without plyometric exercise. Subjects were tested on two separate occasions, once with loaded jump squats as the experimental treatment (two sets of eight jumps, load = 13% bodyweight) (PLYO) and once with time-equated rest as the control treatment (CON). Treatments were implemented following a standard sprinters’ warm-up routine familiar to the subjects. A dependent T-test was used for comparison of sprint interval times between conditions with a significant effect indicated by a -value < 0.05. Sprint time did not differ between CON vs. PLYO at the 10 m (PLYO = 1.90 ± 0.12 s vs. CON = 1.90 ± 0.11 s, = 0.66), 20 m (PLYO = 3.16 ± 0.21 s vs. CON = 3.15 ± 0.19 s, = 0.53), and 30 m (PLYO = 4.32 ± 0.32 s vs. CON = 4.31 ± 0.28 s, = 0.61) intervals. There was no interaction between treatment and sex, sex-specific ranking (above vs. below sex-specific mean), or sprint event (short vs. short–long vs. long) for 10 m, 20 m, or 30-m interval sprint times. At least within the limits of the current investigation, no evidence was provided to suggest that jump squats loaded at 13% bodyweight are an effective means to acutely potentiate sprint performance in collegiate track athletes. However, a further examination of responders indicates that the present loaded jump squat protocol may preferentially potentiate sprint performance in faster male athletes.
机译:现有证据证明了预热条件期间梭芯活性的功效增加了随后的幂锻炼中的性能。我们调查了加载的跳跃深蹲的急性效应纳入标准的短跑运动员预热协议上的大学赛赛道运动员中随后的冲刺性能。 22种男性和女性大学赛道运动员的Sprint次数以30米的冲刺试验在标准短跑者的预热常规的30米的冲刺试验期间以10米的间隔测量,或没有拼接锻炼。受试者在两个单独的场合进行测试,一次用负载跳跃蹲下作为实验处理(两组八跳,负载= 13%体重)(Plyo),一次与控制处理(CON)相等休息一次。在对象熟悉的标准短跑者的预热例程之后实施治疗。依赖性T检验用于比较Sprint间隔时间在value <0.05所示的显着效果之间的条件之间的比较。 Sprint时间在10M(Plyo = 1.90±0.12s,= 1.90±0.11s,= 0.66),20μm(Plyo = 3.16±0.21 s与凝结= 3.15±0.19 S,= 0.53)和30μm(Plyo = 4.32±0.32 s与= 4.31±0.28 s,= 0.61)间隔。治疗和性别之间没有互动,性别特异性排名(上面与性别特定的平均值),或Sprint事件(短与短的Vs,长)为10米,20米或30-M个间隔冲刺时间。至少在当前调查的限度范围内,没有提供证据表明,装载在13%体重的跳跃深蹲是在大学赛轨道运动员中急剧增强的急剧增强性能的有效手段。然而,对响应者的进一步检查表明,目前负载的跳跃蹲坐协议可以更好地提高较快的男运动员冲刺性能。

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