Hays Arnaud, Devys Simon, Bertin Denis, Marquet Laurie-Anne, Brisswalter Jeanick
Institut des Sciences du Mouvement, Aix-Marseille Université, Marseille, France.
Université Côte d'Azur, LAMHESS, Nice, France.
Front Physiol. 2018 Aug 9;9:1062. doi: 10.3389/fphys.2018.01062. eCollection 2018.
To evaluate the physiological requirements imposed by the current mountain biking Cross-Country Olympic (XCO) format. Sixteen Cross-Country cyclists competing at national or international level participated in this study. All participants completed a simulated and a real official race on a cycling-accredited race track. Oxygen consumption (O) and heart rate (HR) values expressed as %O and %HR, respectively, were divided into three physiological intensity zones. The first zone (Z1) was the physiological region below VT1, the second zone (Z2) corresponded to a region between VT1 and VT2, and the third zone (Z3) was located between VT2 and VO. For power output, an additional fourth zone was considered above maximal aerobic power (MAP). When competing in the current XCO format, 37.0 ± 17.9% of the race is performed above the second ventilatory threshold at a mean intensity of 87% O and 25% of the race was spent above MAP. This contribution varied between laps, with a very high intensity during the first lap and more aerobic subsequent laps. The durations of most of the periods beyond MAP oscillated between 5 and 30 s. Between these short, repeated bursts, low-intensity periods of exercise were recorded. The current XCO race format is an acyclical and intermittent exercise comparable to high-intensity team sports. Moreover, our results highlight the relevance of O values when analyzing XCO performance, they should be combined with commonly used HR and/or power output data.
为评估当前山地自行车越野奥运(XCO)赛制所带来的生理需求。16名参加国家或国际级比赛的山地自行车越野赛选手参与了本研究。所有参与者在一条经自行车赛事认证的赛道上完成了一场模拟比赛和一场真实的官方比赛。分别以%O₂和%HR表示的耗氧量(O₂)和心率(HR)值被分为三个生理强度区。第一个区(Z1)是低于第一通气阈值(VT1)的生理区域,第二个区(Z2)对应于VT1和第二通气阈值(VT2)之间的区域,第三个区(Z3)位于VT2和最大摄氧量(VO₂max)之间。对于功率输出,在最大有氧功率(MAP)之上还考虑了一个额外的第四区。在当前的XCO赛制比赛中,37.0±17.9%的赛程是在第二通气阈值之上进行的,平均强度为87%O₂,25%的赛程是在MAP之上度过的。这种贡献在各圈之间有所不同,第一圈强度非常高,随后几圈则更偏向有氧。超过MAP的大部分时段持续时间在5到30秒之间波动。在这些短暂、重复的爆发之间,记录到了低强度运动时段。当前的XCO比赛赛制是一种与高强度团队运动类似的非周期性、间歇性运动。此外,我们的结果突出了在分析XCO表现时O₂值的相关性,它们应与常用的HR和/或功率输出数据相结合。