Salazar-Martínez Eduardo, Terrados Nicolás, Burtscher Martin, Santalla Alfredo, Naranjo Orellana José
Department of Sports and Computing, Pablo Olavide University, Seville, Spain.
Department of Functional Biology, Oviedo University, Spain.
Respir Physiol Neurobiol. 2016 Jul 15;229:17-23. doi: 10.1016/j.resp.2016.04.001. Epub 2016 Apr 13.
The purpose of this three-year observational study was to analyze the ventilatory efficiency and breathing pattern in world-class professional cyclists. Twelve athletes (22.61±3.8years; 177.38±5.5cm; 68.96±5.5kg and VO2max 75.51±3.3mLkg(-1)min(-1)) were analyzed retrospectively. For each subject, respiratory and performance variables were recorded during incremental spiroergometry: oxygen uptake (VO2), carbon dioxide output (VCO2), pulmonary ventilation (VE), tidal volume (Vt), breathing frequency (fR), driving (Vt/Ti), timing (Ti/Ttot), peak power output (PPO) and maximum oxygen uptake (VO2max). Ventilatory efficiency (VE/VCO2 slope) was calculated from the beginning of exercise testing to the second ventilatory threshold (VT2). The VE/VCO2 slope was unaffected during the study period (24.63±3.07; 23.61±2:79; 24:89±2:61) with a low effect size (ES=0.04). The PPO improved significantly in the third year (365±33.74; 386.36±32.33; 415.00±24.15) (p<0.05). The breathing pattern variables, Vt/Ti and Ti/Ttot, did not change significantly over the three year period (ES=0.00; ES=0.03 respectively). These findings suggest that changes in cycling performance in world-class professional cyclists do not modify breathing variables related to the control of ventilatory efficiency.
这项为期三年的观察性研究旨在分析世界级职业自行车运动员的通气效率和呼吸模式。对12名运动员(年龄22.61±3.8岁;身高177.38±5.5厘米;体重68.96±5.5千克,最大摄氧量75.51±3.3毫升·千克⁻¹·分钟⁻¹)进行回顾性分析。对于每个受试者,在递增式运动心肺功能测试期间记录呼吸和运动表现变量:摄氧量(VO₂)、二氧化碳排出量(VCO₂)、肺通气量(VE)、潮气量(Vt)、呼吸频率(fR)、驱动比(Vt/Ti)、时间比(Ti/Ttot)、峰值功率输出(PPO)和最大摄氧量(VO₂max)。从运动测试开始到第二个通气阈值(VT2)计算通气效率(VE/VCO₂斜率)。在研究期间,VE/VCO₂斜率未受影响(分别为24.63±3.07;23.61±2.79;24.89±2.61),效应量较低(ES = 0.04)。第三年PPO显著提高(分别为365±33.74;386.36±32.33;415.00±24.15)(p<0.05)。呼吸模式变量Vt/Ti和Ti/Ttot在三年期间没有显著变化(效应量分别为ES = 0.00;ES = 0.03)。这些发现表明,世界级职业自行车运动员骑行表现的变化不会改变与通气效率控制相关的呼吸变量。