Marconi C, Heisler N, Meyer M, Weitz H, Pendergast D R, Cerretelli P, Piiper J
Abteilung Physiologie, Max-Planck-Institut für experimentelle Medizin, Göttingen, F.R.G.
Respir Physiol. 1988 Oct;74(1):1-13. doi: 10.1016/0034-5687(88)90135-1.
The distribution of blood flow in skeletal muscle stimulated to rhythmic isotonic contractions was studied by injections of radioactive microspheres into the arterial supply in 8 gastrocnemius muscles (mean weight 84 g) of 6 anesthetized dogs (20-25 kg body weight). The distribution of 10 micron microspheres in regions of about 0.5 g was very similar to that of the standard 15 micron microspheres, whereas that of 25 micron microspheres was more uneven. The coefficient of variation (CV = SD/mean) of the ratio of simultaneously injected 10 micron and 15 micron microspheres, 0.12, was taken as the inherent scatter of the method. The average spatial distribution inequality of 10-15 micron microspheres corresponded to a CV of 0.45 and the specific local blood flow inhomogeneity to a CV = 0.43 ( = square root 0.45(2) - 0.12(2], but there were marked differences between muscles. At equal blood flow levels, the inhomogeneity during reactive hyperemia was similar to that observed during stimulation. The temporal variability of blood flow in individual muscle pieces was obtained from the comparison of fractional trapping of 4 to 5 differently labeled microspheres injected at intervals of 2 min into steadily stimulated muscles. The mean CV for the variations in time was 0.23 and that corrected for methodological scatter, 0.19, but the differences in the extent of temporal blood flow changes among muscle pieces within a muscle and between different muscles were large. The presence of considerable spatial and temporal variations of blood flow in exercising muscle during apparent steady state may be important in limiting and/or modulating tissue O2 supply.
通过向6只麻醉犬(体重20 - 25千克)的8条腓肠肌(平均重量84克)的动脉供应中注射放射性微球,研究了在有节律的等张收缩刺激下骨骼肌中的血流分布。10微米微球在约0.5克区域内的分布与标准的15微米微球非常相似,而25微米微球的分布则更不均匀。同时注射的10微米和15微米微球比例的变异系数(CV = SD/均值)为0.12,被视为该方法的固有散射。10 - 15微米微球的平均空间分布不均等对应CV为0.45,特定局部血流不均匀性对应CV = 0.43(= √0.45² - 0.12²),但不同肌肉之间存在显著差异。在血流水平相等时,反应性充血期间的不均匀性与刺激期间观察到的相似。通过比较每隔2分钟向稳定刺激的肌肉中注射的4至5种不同标记微球的分数捕获情况,获得了单个肌肉块中血流的时间变异性。时间变化的平均CV为0.23,经方法学散射校正后为0.19,但同一肌肉内不同肌肉块之间以及不同肌肉之间血流时间变化程度的差异很大。在明显的稳定状态下,运动肌肉中存在相当大的血流空间和时间变化,这可能对限制和/或调节组织氧气供应很重要。