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慢性低氧环境下长时间工作时人体中氧合血红蛋白的解离情况。

HbO2 dissociation in man during prolonged work in chronic hypoxia.

作者信息

Dempsey J A, Thomson J M, Forster H V, Cerny F C, Chosy L W

出版信息

J Appl Physiol. 1975 Jun;38(6):1022-9. doi: 10.1152/jappl.1975.38.6.1022.

Abstract

In healthy human sojourners to 3,100 m we studied exercise-induced shifts in HbO2 dissociation: their regulation in femoral venous blood and their net effect on estimated capillary PO2 (PC-O2) in working skeletal muscle. Prolonged heavy work effected an increase of 10.3 plus or minus 0.9 mmHg in in vivo P50 (7.30 PH-v, 41 degrees C-v, and 45 Pv-CO2); due entirely to the additive effects of increased venous temperature and [H+]. The rightward curve shift during work at 3,000 m, compared to that at 250 m, produced a similar increase in in vivo P50 but a reduced net effect on PC-O2, because Cv-02 at 3,100 m was reduced similar to 2 ml/100 ml to the lower converging portions of the curve. The lower Cv-O2 (and Pv-O2) at 3,100 M was attributable to a small decrease in total systemic blood flow. The net effect of the rightward curve shift during exercise on mean to end-capillary PO2 was positive in most cases (+1 to +8 mmHg PCO2). However, it was shown that the levels of mean to end-capillary PO2 (28-13 mmHg), which would have been obtained during exercise in the absence of any rightward curve shift, were more than adequate to sustain a steady state of aerobic energy production in working skeletal muscle. These data do not support the concept of a significant contribution to oxygen delivery to working skeletal muscle from in vivo shifts in HbO2 dissociation, during either acclimatization to high altitude or during prolonged muscular work.

摘要

在健康的海拔3100米的短期居住者中,我们研究了运动引起的血红蛋白氧解离(HbO2)变化:其在股静脉血中的调节以及对工作骨骼肌中估计的毛细血管氧分压(PC - O2)的净影响。长时间繁重工作使体内P50增加了10.3±0.9 mmHg(pH - v为7.30,温度 - v为41℃,Pv - CO2为45);这完全是静脉温度和[H+]增加的叠加效应。与海拔250米时相比,在3000米工作时曲线右移导致体内P50有类似增加,但对PC - O2的净影响减小,因为在3100米时Cv - O2降低了约2 ml/100 ml至曲线较低的交汇部分。3100米处较低的Cv - O2(和Pv - O2)归因于全身总血流量的小幅减少。运动期间曲线右移对平均至末梢毛细血管氧分压的净影响在大多数情况下是正向的(PCO2为+1至+8 mmHg)。然而,研究表明,在没有任何曲线右移的情况下运动期间本可获得的平均至末梢毛细血管氧分压水平(28 - 13 mmHg)足以维持工作骨骼肌中有氧能量产生的稳定状态。这些数据不支持在适应高原或长时间肌肉工作期间,HbO2解离的体内变化对工作骨骼肌的氧气输送有显著贡献这一概念。

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