Boushel R, Calbet J A, Rådegran G, Sondergaard H, Wagner P D, Saltin B
Copenhagen Muscle Research Center, Rigshospitalet, University of Copenhagen, Denmark.
Circulation. 2001 Oct 9;104(15):1785-91. doi: 10.1161/hc4001.097040.
In chronic hypoxia, both heart rate (HR) and cardiac output (Q) are reduced during exercise. The role of parasympathetic neural activity in lowering HR is unresolved, and its influence on Q and oxygen transport at high altitude has never been studied.
HR, Q, oxygen uptake, mean arterial pressure, and leg blood flow were determined at rest and during cycle exercise with and without vagal blockade with glycopyrrolate in 7 healthy lowlanders after 9 weeks' residence at >/=5260 m (ALT). At ALT, glycopyrrolate increased resting HR by 80 bpm (73+/-4 to 153+/-4 bpm) compared with 53 bpm (61+/-3 to 114+/-6 bpm) at sea level (SL). During exercise at ALT, glycopyrrolate increased HR by approximately 40 bpm both at submaximal (127+/-4 to 170+/-3 bpm; 118 W) and maximal (141+/-6 to 180+/-2 bpm) exercise, whereas at SL, the increase was only by 16 bpm (137+/-6 to 153+/-4 bpm) at 118 W, with no effect at maximal exercise (181+/-2 bpm). Despite restoration of maximal HR to SL values, glycopyrrolate had no influence on Q, which was reduced at ALT. Breathing FIO(2)=0.55 at peak exercise restored Q and power output to SL values.
Enhanced parasympathetic neural activity accounts for the lowering of HR during exercise at ALT without influencing Q. The abrupt restoration of peak exercise Q in chronic hypoxia to maximal SL values when arterial PO(2) and SO(2) are similarly increased suggests hypoxia-mediated attenuation of Q.
在慢性缺氧状态下,运动期间心率(HR)和心输出量(Q)均会降低。副交感神经活动在降低心率方面的作用尚未明确,其对高海拔地区的心输出量和氧运输的影响也从未被研究过。
7名健康的低地居民在海拔≥5260米(ALT)居住9周后,在静息状态以及使用格隆溴铵进行迷走神经阻滞和未进行阻滞的情况下进行自行车运动时,测定了心率、心输出量、摄氧量、平均动脉压和腿部血流量。在海拔高度时,与海平面(SL)时相比,格隆溴铵使静息心率增加了80次/分钟(从73±4次/分钟增加到153±4次/分钟),而在海平面时增加了53次/分钟(从61±3次/分钟增加到114±6次/分钟)。在海拔高度运动期间,在次最大运动(127±4次/分钟到170±3次/分钟;118瓦)和最大运动(141±6次/分钟到180±2次/分钟)时,格隆溴铵使心率增加约40次/分钟,而在海平面时,在118瓦时心率仅增加16次/分钟(从137±6次/分钟增加到153±4次/分钟),在最大运动时(181±2次/分钟)无影响。尽管最大心率恢复到海平面时的值,但格隆溴铵对心输出量没有影响,心输出量在海拔高度时降低。在运动峰值时呼吸FIO₂=0.55可使心输出量和功率输出恢复到海平面时的值。
增强的副交感神经活动导致海拔高度运动期间心率降低,但不影响心输出量。当动脉PO₂和SO₂同样增加时,慢性缺氧状态下运动峰值心输出量突然恢复到最大海平面值,提示缺氧介导的心输出量衰减。