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决定最大摄氧量的血流与压力关系。

Blood flow and pressure relationships which determine VO2max.

作者信息

Brechue W F, Ameredes B T, Barclay J K, Stainsby W N

机构信息

Department of Physiology, University of Florida Health Science Center, Gainesville 32610-0267.

出版信息

Med Sci Sports Exerc. 1995 Jan;27(1):37-42.

PMID:7898335
Abstract

The role of O2 delivery in regulating VO2max has been studied in an isolated gastrocnemius-plantaris muscle preparation contracting in situ; recent data addressing this issue are presented. VO2 increases nonlinearly with stimulation frequency reaching a peak at 5 twitches.s-1 or 1 tet.s-1 (200 ms trains, 50 imp.s-1). Further increases in stimulation frequency result in a lower VO2. Measured VO2 maxima are less than predicted VO2 capacity, and peak VO2 during tetanic contractions is greater than that during twitches. Above 150 imp.min-1, VO2 is directly related to the level of blood flow attained as VO2/Q (arterial-venous O2 difference) is fixed by some unknown mechanism. Increasing blood flow, with a pump, during 1.s-1 tetanic contractions increases O2 diffusive conductance and peak VO2. When O2 delivery is reduced, ischemic hypoxia appears to result in more rapid reductions in muscle performance than hypoxic hypoxia because of decreases in perfusion pressure and Q. 31P-NMR studies reveal that reductions in creatine phosphate and energy charge are similar between ischemia and hypoxia suggesting a common regulator, O2. We conclude that VO2max is limited by O2 delivery as a result of a limited and uneven distribution of muscle blood flow. These limitations appear secondary to mechanical restraints imposed by contraction duty cycle and vascular compression.

摘要

在原位收缩的离体腓肠肌 - 比目鱼肌标本中,研究了氧气输送在调节最大摄氧量(VO2max)中的作用;本文呈现了近期关于此问题的数据。VO2随刺激频率呈非线性增加,在5次抽搐·秒-1或1次强直收缩·秒-1(200毫秒串刺激,50次脉冲·秒-1)时达到峰值。刺激频率进一步增加会导致VO2降低。测得的VO2最大值低于预测的VO2容量,强直收缩期间的峰值VO2大于抽搐期间的峰值VO2。在150次脉冲·分钟-1以上,VO2与所达到的血流水平直接相关,因为VO2/ Q(动静脉氧分压差)通过某种未知机制保持固定。在1次强直收缩·秒-1期间用泵增加血流会增加氧气扩散传导率和峰值VO2。当氧气输送减少时,由于灌注压力和血流量(Q)降低,缺血性缺氧似乎比低氧性缺氧导致肌肉性能更快下降。31P - NMR研究表明,缺血和缺氧时磷酸肌酸和能量电荷的减少相似,提示存在共同的调节因子——氧气。我们得出结论,由于肌肉血流分布有限且不均匀,VO2max受氧气输送限制。这些限制似乎是收缩工作周期和血管压迫所施加的机械约束的次要结果。

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