Eves Neil D, Petersen Stewart R, Jones Richard L
Faculty of Physical Education and Recreation, University of Alberta, Edmonton, AB, T6G 2H9.
Can J Appl Physiol. 2003 Dec;28(6):910-26. doi: 10.1139/h03-065.
Maximal exercise performance is decreased when breathing from a self-contained breathing apparatus (SCBA), owing to a ventilatory limitation imposed by the increased expiratory resistance. To test the hypothesis that decreasing the density of the breathing gas would improve maximal exercise performance, we studied 15 men during four graded exercise tests with the SCBA. Participants breathed a different gas mixture during each test: normoxia (NOX; 21% O2, 79% N2), hyperoxia (HOX; 40% O2, 60% N2), normoxic helium (HE-OX; 21% O2, 79% He), and hyperoxic helium (HE-HOX; 40% O2, 60% He). Compared to NOX, power output at the ventilatory threshold and at maximal exercise significantly increased with both hyperoxic mixtures. Minute ventilation was increased at peak exercise with both helium mixtures, and maximal aerobic power (VO2max) was significantly increased by 12.9 +/- 5.6%, 10.2 +/- 6.3%, and 21.8 +/- 5.6% with HOX, HE-OX, and HE-HOX, respectively. At peak exercise, the expired breathing resistance imposed by the SCBA was significantly decreased with both helium mixtures, and perceived respiratory distress was lower with HE-HOX. The results show that HE-OX improved maximal exercise performance by minimizing the ventilation limitation. The performance-enhancing effect of HOX may be explained by increased arterial oxygen content. Moreover, HE-HOX appeared to combine the effects of helium and hyperoxia on VO2max.
当使用自给式呼吸器(SCBA)呼吸时,由于呼气阻力增加导致通气受限,最大运动能力会下降。为了验证降低呼吸气体密度可改善最大运动能力这一假设,我们在15名男性身上进行了4次使用SCBA的分级运动测试。在每次测试中,参与者呼吸不同的气体混合物:常氧(NOX;21% O₂,79% N₂)、高氧(HOX;40% O₂,60% N₂)、常氧氦气(HE - OX;21% O₂,79% He)和高氧氦气(HE - HOX;40% O₂,60% He)。与NOX相比,两种高氧混合物在通气阈值和最大运动时的功率输出均显著增加。两种氦气混合物在运动峰值时分钟通气量增加,并且最大有氧功率(VO₂max)分别使用HOX、HE - OX和HE - HOX时显著增加了12.9±5.6%、10.2±6.3%和21.8±5.6%。在运动峰值时,两种氦气混合物使SCBA施加的呼气呼吸阻力显著降低,并且使用HE - HOX时感觉呼吸窘迫较轻。结果表明,HE - OX通过最小化通气限制提高了最大运动能力。HOX的性能增强作用可能由动脉血氧含量增加来解释。此外,HE - HOX似乎结合了氦气和高氧对VO₂max的影响。