McEvoy J D, Jones N L
Med Sci Sports. 1975 Winter;7(4):312-5. doi: 10.1249/00005768-197500740-00014.
The PCO2, PO2 and pH of arterial blood and arterialized capillary blood from the ear lobe were compared in 13 patients at rest and during submaximal exercise. The mean capillary PCO2 was .6 mmHg lower than arterial PCO2 at rest and 1 mmHg lower in exercise. The variation in comparisons (S.D. 1.4 mmHg) at rest and exercise, was greater than between duplicate capillary samples (S.D. .7 mmHg). The mean capillary PO2 was 3.3 mmHg higher than arterial at rest, and 1.7 mmHg higher in exercise: the variation was also greater than for PCO2 (S.D. 5.2 MMHg at rest, 4.2 mmHg in exercise) and greater than in duplicate samples (S.D. 2.6 mmHg). A comparison was made of calculated cardiac output (indirect Fick method) and dead space: tidal volume ratio during exercise, using arterial PCO2 and capillary PCO2: cardiac output was systematically overestimated by 6% (S.D. 9.3%) and VD/VT ratio underestimated by 10% (S.D. 9-3%) when capillary PCO2 was used in the calculations. Capillary blood samples are an acceptable alternative to arterial blood, for measurement of blood gases and pH, as long as blood flow is brisk enough to fill a large (125 mgl) glass capillary tube within 30 seconds. The accuracy of the estimates is greatest for pH, and least for PO2. The PCO2 and PO2 measurements are sufficiently precise for their use in the calculation of cardiac output, VD/VT ratio, alveolar-arterial PO2 difference and venous admixture effect during exercise.
对13名患者在静息状态和次最大运动期间耳垂处动脉血和动脉化毛细血管血的PCO₂、PO₂和pH进行了比较。静息时,毛细血管平均PCO₂比动脉PCO₂低0.6 mmHg,运动时低1 mmHg。静息和运动时比较的差异(标准差1.4 mmHg)大于重复毛细血管样本间的差异(标准差0.7 mmHg)。静息时,毛细血管平均PO₂比动脉PO₂高3.3 mmHg,运动时高1.7 mmHg:其差异也大于PCO₂(静息时标准差5.2 mmHg,运动时4.2 mmHg),且大于重复样本间的差异(标准差2.6 mmHg)。利用动脉PCO₂和毛细血管PCO₂对运动期间计算的心输出量(间接Fick法)和死腔:潮气量比值进行了比较:当计算中使用毛细血管PCO₂时,心输出量被系统性高估6%(标准差9.3%),VD/VT比值被低估10%(标准差9 - 3%)。只要血流足够快,能在30秒内充满一根大的(125 mgl)玻璃毛细管,毛细血管血样本就是测量血气和pH时动脉血的可接受替代物。pH估计的准确性最高,PO₂最低。PCO₂和PO₂测量值在计算运动期间的心输出量、VD/VT比值、肺泡 - 动脉PO₂差值和静脉混合效应时精度足够高。