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Physiological Responses to 90 s All Out Isokinetic Sprint Cycling in Boys and Men

机译:男孩和男人对90年代全速运动冲刺循环的生理反应

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摘要

The purpose of this study was to compare the VO2 kinetic and mechanical power responses of boys and men to all out 90 s sprint cycle exercise. Eight boys (14.6 ± 0.3 y) and eight men (33.8 ± 6.5 y) volunteered to participate and completed a ramp test (to determine VO2peak and ventilatory threshold, VT) and then on subsequent days, two 90 s all out cycle sprints on an isokinetic cycle ergometer. During each test, breath-by-breath pulmonary gas exchange and power output were measured. Parameters from the power output profiles were derived from the average response of the two tests including peak power (PP, highest power output in 1 s), end power (EP60-90, power over the last 30 s), and mean power over the 90 s (MP90). Independent pairwise and dependent t-tests were used to compare the data from tests between adults and boys subject groups. Significant differences between adults and boys were found for absolute PP (881.4 ± 60.7 vs 533.6 ± 50.7 W), EP60-90 (288.6 ± 25.7 vs 134.3 ± 17.6 W) and MP90 (434.5 ± 27.4 vs 238.4 ± 17.3 W, p =0.001) respectively. Relative to body mass significant differences between adults and boys were found for EP60-90, MP90 and total work (p < 0.002). The boys attained 90 s VO2 values that were closer to VO2peak than their adult counterparts (93.3 ± 2.6 vs 84.9 ± 2.3 %, p = 0.03). They also demonstrated faster VO2 kinetics (10.8 ± 1.5 vs 17.6 ± 1.0 s, p < 0.01). In conclusion, during all out 90 s cycle sprinting boys were able to attain VO2 values that were closer to VO2peak and a faster time constant than adult men. These findings provide insight into the contribution and speed of response of the aerobic system during an ‘anaerobic’ test.Key Points class="unordered" style="list-style-type:disc">The results of this study confirm the significant contributions of the aerobic energy systems during so called ‘anaerobic tests’.Boys were able to attain VO2 values from an all out 90 s sprint cycle that were closer to their aerobic VO2 peak test than adults. More detailed studies are required to investigate the limiting factors that prevent VO2 peak being reached in an all out sprint cycle.All out tests of a duration > 30 s and coupled with gas and power analyses offer paediatric physiologists considerable scope to examine the contributions of the anaerobic and aerobic energy systems until more ethically viable methods are found.
机译:这项研究的目的是比较90 s短跑周期运动中男孩和男人的VO2动能和机械能响应。八个男孩(14.6±0.3 y)和八个男人(33.8±6.5 y)自愿参加并完成了一次斜坡测试(以确定VO2peak和通气阈值VT),然后在随后的几天中,两个90 s的整个周期都是冲刺等速循环测功机。在每次测试中,均测量了逐呼吸的肺气体交换和功率输出。功率输出曲线中的参数来自两次测试的平均响应,包括峰值功率(PP,1 s内的最大功率输出),终端功率(EP60-90,最近30 s内的功率)以及平均功率。 90秒(MP90)。使用独立的成对和相关t检验比较成人和男孩受试者组的测试数据。发现成年人和男孩之间的绝对PP(881.4±60.7 vs 533.6±50.7 W),EP60-90(288.6±25.7 vs 134.3±17.6 W)和MP90(434.5±27.4 vs 238.4±17.3 W)有显着差异,p = 0.001 ) 分别。相对于体重,成人和男孩之间的EP60-90,MP90和总功有显着差异(p <0.002)。这些男孩达到的90 s VO2值比成年男孩更接近VO2peak(93.3±2.6对84.9±2.3%,p = 0.03)。他们还展示了更快的VO2动力学(10.8±1.5与17.6±1.0 s,p <0.01)。总之,在整个90 s周期内,短跑男孩都能获得比成年男子更接近VO2peak的VO2值和更快的时间常数。这些发现为有氧系统在“无氧”测试中的贡献和响应速度提供了见识。要点 class =“ unordered” style =“ list-style-type:disc”> <!-list-behavior =无序前缀词=标记类型=光盘最大标签大小= 0 => 这项研究的结果证实了有氧能量系统在所谓的“无氧测试”中的重要贡献。男孩能够在整个90 s的冲刺周期中获得VO2值,该值比成年人更接近其有氧VO2峰值测试。需要进行更详细的研究来研究阻止在全速跑周期中达到VO2峰值的限制因素。 持续时间大于30 s的全速测试以及气体和功率分析为小儿生理学家提供了可观的机会范围,以检查厌氧和有氧能源系统的贡献,直到找到更符合道德的方法为止。

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