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Influence of Inspiratory Muscle Training on Ventilatory Efficiency and Cycling Performance in Normoxia and Hypoxia

机译:吸氧肌肉训练对常氧和低氧时通气效率和骑自行车性能的影响

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摘要

The aim of this study was to analyse the influence of inspiratory muscle training (IMT) on ventilatory efficiency, in normoxia and hypoxia, and to investigate the relationship between ventilatory efficiency and cycling performance. Sixteen sport students (23.05 ± 4.7 years; 175.11 ± 7.1 cm; 67.0 ± 19.4 kg; 46.4 ± 8.7 ml·kg−1·min−1) were randomly assigned to an inspiratory muscle training group (IMTG) and a control group (CG). The IMTG performed two training sessions/day [30 inspiratory breaths, 50% peak inspiratory pressure (Pimax), 5 days/week, 6-weeks]. Before and after the training period subjects carried out an incremental exercise test to exhaustion with gas analysis, lung function testing, and a cycling time trial test in hypoxia and normoxia. Simulated hypoxia (FiO2 = 16.45%), significantly altered the ventilatory efficiency response in all subjects (p < 0.05). Pimax increased significantly in the IMTG whereas no changes occurred in the CG (time × group, p < 0.05). Within group analyses showed that the IMTG improved ventilatory efficiency (VE/VCO2 slope; EqCO2VT2) in hypoxia (p < 0.05) and cycling time trial performance [WTTmax (W); WTTmean (W); PTF(W)] (p < 0.05) in hypoxia and normoxia. Significant correlations were not found in hypoxia nor normoxia found between ventilatory efficiency parameters (VE/VCO2 slope; LEqCO2; EqCO2VT2) and time trial performance. On the contrary the oxygen uptake efficiency slope (OUES) was highly correlated with cycling time trial performance (r = 0.89; r = 0.82; p < 0.001) under both conditions. Even though no interaction effect was found, the within group analysis may suggest that IMT reduces the negative effects of hypoxia on ventilatory efficiency. In addition, the data suggest that OUES plays an important role in submaximal cycling performance.
机译:这项研究的目的是分析在正常氧和低氧条件下吸气肌肉训练(IMT)对通气效率的影响,并研究通气效率与骑自行车表现之间的关系。随机分配16名体育学生(23.05±4.7岁; 175.11±7.1 cm; 67.0±19.4 kg; 46.4±8.7 ml·kg -1 ·min -1 )吸气肌肉训练组(IMTG)和对照组(CG)。 IMTG每天进行两次训练[30次吸气,50%峰值吸气(Pimax),5天/周,6周]。在训练期间之前和之后,受试者进行了一项渐进性运动测试,以进行乏力分析,包括气体分析,肺功能测试和缺氧和常氧循环时间试验测试。模拟的缺氧(FiO2 = 16.45%),显着改变了所有受试者的通气效率反应(p <0.05)。 IMTG中的Pimax显着增加,而CG中无变化(时间×组,p <0.05)。组内分析显示,IMTG改善了缺氧时的通气效率(VE / VCO2斜率; EqCO2VT2)(p <0.05)和骑车时间试验表现[WTTmax(W); WTT平均值(W); PTF(W)](p <0.05)在低氧和常氧中。在通气效率参数(VE / VCO2斜率; LEqCO2; EqCO2VT2)与计时试验性能之间的低氧或常氧中未发现显着相关性。相反,在两种情况下,氧气吸收效率斜率(OUES)与循环时间试验的性能高度相关(r = 0.89; r = 0.82; p <0.001)。即使未发现交互作用,组内分析也可能表明IMT可以减少缺氧对通气效率的负面影响。另外,数据表明OUES在次最大循环性能中起重要作用。

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