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The decrease of maximal oxygen consumption during hypoxia in man: a mirror image of the oxygen equilibrium curve.

机译:人体缺氧期间最大耗氧量的减少:氧气平衡曲线的镜像。

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摘要

1. Endurance athletes (E) undergo a marked reduction of arterial O2 saturation (Sa,O2) at maximal exercise in normoxia, which disappears when they breathe hyperoxic mixtures. In addition, at a given level of hypoxia, the drop in maximal O2 consumption (VO2,max) is positively related to the individual normoxic VO2,max. 2. These data suggest that the curve relating VO2,max to PI,O2 may be steeper and perhaps less curved in E than in sedentary subjects (S) with low VO2,max values because of the greater hypoxaemia in the latter, whence the hypotheses that (i) the relationship between VO2,max and PI,O2 may be set by the shape of the oxygen equilibrium curve; and (ii) the differences between E and S may be due to the different position on the oxygen equilibrium curve on which these subjects operate. These hypotheses have been tested by performing a systematic comparison of the VO2,max or Sa,O2 vs. PI,O2 relationships in E and S. 3. On ten subjects (five S and five E), VO2,max was measured by standard procedure during cycloergometric exercise. Sa,O2 was measured by finger-tip infrared oximetry. Arterialized blood PO2 (Pa,O2) and PCO2 (Pa,CO2) were determined in 80 microliters blood samples from an ear lobe. The subjects breathed ambient air or a N2-O2 mixture with an inspired O2 fraction (FI,O2) of 0.30, 0.18, 0.16, 0.13 and 0.11, respectively, VO2,max was normalized with respect to that obtained at the highest FI,O2. 4. The relationships between Sa,O2 or normalized VO2,max and FI,O2 (or PI,O2) had similar shapes, the data for E being systematically below and significantly different from those for S. Linear relationships between Sa,O2 and normalized VO2,max, statistically equal between E and S, were found. 5. We conclude that the relationships between either VO2,max or Sa,O2 and FI,O2 (or Pa,O2) may indeed be the mirror images of one another, implying a strict link between the decrease of VO2,max in hypoxia and the shape of the oxygen equilibrium curve, as hypothesized.
机译:1.耐力运动员(E)在正常运动中的最大运动量时会显着降低动脉血氧饱和度(Sa,O2),当他们吸入高氧混合物时会消失。此外,在给定的缺氧水平下,最大摄氧量(VO2,max)的下降与各个常氧VO2,max正相关。 2.这些数据表明,与VO2,max值较低的久坐受试者(S)相比,E中VO2,max与PI,O2的曲线可能更陡峭,弯曲程度可能更低,这是因为后者的低氧血症更大,因此假设(i)VO2,max与PI,O2之间的关系可以通过氧平衡曲线的形状来设定; (ii)E和S之间的差异可能是由于这些受试者在氧气平衡曲线上的位置不同所致。通过对E和S中VO2,max或Sa,O2与PI,O2之间的关系进行系统比较,对这些假设进行了检验。3.在十个受试者(五个S和五个E)上,VO2,max通过标准测量人体测验运动过程。 Sa,O2用指尖红外测氧法测量。在来自耳垂的80微升血液样本中测定了动脉血PO2(Pa,O2)和PCO2(Pa,CO2)。受试者呼吸环境空气或N2-O2混合物,其吸入的O2分数(FI,O2)分别为0.30、0.18、0.16、0.13和0.11,相对于最高FI,O2,将VO2,max标准化。 4. Sa,O2或归一化的VO2,max与FI,O2(或PI,O2)之间的关系具有相似的形状,E的数据系统地低于S,且与S的数据显着不同。Sa,O2和归一化的线性关系发现VO2,max在E和S之间在统计上相等。 5.我们得出结论,VO2,max或Sa,O2与FI,O2(或Pa,O2)之间的关系可能确实是彼此的镜像,这意味着缺氧时VO2,max的降低与假设的氧气平衡曲线的形状。

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