Gaehtgens P, Kreutz F, Albrecht K H
Eur J Appl Physiol Occup Physiol. 1979 Apr 12;41(1):27-39. doi: 10.1007/BF00424466.
Contractile power, blood flow, O2-uptake, and O2-extraction during isotonic, rhythmic exercise were determined in the isolated canine gastrocnemius muscle during perfusion with blood with hematocrits between 0.21 and 0.81. The results obtained in 36 measurements on nine muscles showed that maximal O2-delivery to the muscle if found at hematocrits between 0.5 and 0.6. Both in the range of hemodilution, and in the range of extreme hemoconcentration, O2-delivery decreases significantly. O2-consumption and contractile power of the muscles are almost unaffected in the hematocrit range between 0.4 and 0.7; beyond and below this hematocrit range both parameters decrease. O2-extraction is virtually constant in the hematocrit range between 0.3 and 0.6, but increase both below and above these hematocrit levels. It is concluded that due to reduced vasodilatory reserve in working skeletal muscle compared to resting muscle the optimal hematocrit is shifted to higher values.
在用血细胞比容在0.21至0.81之间的血液灌注离体犬腓肠肌过程中,测定了等张、有节律运动时的收缩力、血流量、氧气摄取量和氧气提取量。对9块肌肉进行的36次测量结果表明,当血细胞比容在0.5至0.6之间时,肌肉的最大氧气输送量被发现。在血液稀释范围内以及在极度血液浓缩范围内,氧气输送量均显著降低。在血细胞比容在0.4至0.7之间时,肌肉的氧气消耗量和收缩力几乎不受影响;超出和低于此血细胞比容范围时,这两个参数均降低。在血细胞比容在0.3至0.6之间时,氧气提取量实际上是恒定的,但在这些血细胞比容水平以下和以上时均增加。得出的结论是,由于与静息肌肉相比,工作骨骼肌的血管舒张储备减少,最佳血细胞比容向更高值偏移。