Hernández Andrés, McDonald James R, Lai Nicola, Gladden L Bruce
Department of Kinesiology, Auburn University, Auburn, AL, USA.
J Appl Physiol (1985). 2010 May;108(5):1169-76. doi: 10.1152/japplphysiol.01318.2009. Epub 2010 Mar 11.
It was the purpose of this study to examine the effect of a priming contractile bout on oxygen uptake (VO2) on-kinetics in highly oxidative skeletal muscle. Canine gastrocnemii (n=12) were stimulated via their sciatic nerves (8 V, 0.2-ms duration, 50 Hz, 200-ms train) at a rate of 2 contractions/3 s (approximately 70% peak VO2) for two 2-min bouts, separated by 2 min of recovery. Blood flow was recorded with an ultrasonic flowmeter, and muscle oxygenation monitored via near-infrared spectroscopy. Compared with the first bout (bout 2 vs. bout 1), the VO2 primary time constant (mean+/-SD, 9.4+/-2.3 vs. 12.0+/-3.9 s) and slow-component amplitude (5.9+/-6.3 vs. 12.1+/-9.0 ml O2.kg wet wt(-1).min(-1)) were significantly reduced (P<0.05) during the second bout. Blood flow on-kinetics were significantly speeded during the second bout (time constant=7.7+/-2.6 vs. 14.8+/-5.8 s), and O2 extraction was greater at the onset of contractions (0.050+/-0.030 vs. 0.020+/-0.010 ml O2/ml blood). Kinetics of muscle deoxygenation were significantly slower at the onset of the second bout (7.2+/-2.2 vs. 4.4+/-1.2 s), while relative oxyhemoglobin concentration was elevated throughout the second bout. These results suggest that better matching of O2 delivery to VO2 speeds Vo(2) on-kinetics at this metabolic rate, but do not eliminate a potential role for enhanced metabolic activation. Additionally, altered motor unit recruitment at the onset of a second bout is not a prerequisite for reductions in the VO2 slow-component amplitude after a priming contractile bout in canine muscle in situ.
本研究旨在探讨预收缩 bout 对高氧化型骨骼肌摄氧量(VO₂)动力学的影响。通过坐骨神经刺激 12 只犬的腓肠肌(8V,持续时间 0.2ms,50Hz,200ms 串刺激),刺激频率为每 3 秒 2 次收缩(约为峰值 VO₂的 70%),共进行两组 2 分钟的 bout,两组之间有 2 分钟的恢复时间。用超声流量计记录血流量,通过近红外光谱监测肌肉氧合情况。与第一次 bout 相比(第二次 bout 与第一次 bout 相比),第二次 bout 期间 VO₂的主要时间常数(平均值±标准差,9.4±2.3 秒对 12.0±3.9 秒)和慢成分幅度(5.9±6.3 对 12.1±9.0ml O₂·kg 湿重⁻¹·min⁻¹)显著降低(P<0.05)。第二次 bout 期间血流量动力学显著加快(时间常数=7.7±2.6 秒对 14.8±5.8 秒),收缩开始时的 O₂提取量更大(0.050±0.030 对 0.020±0.010ml O₂/ml 血液)。第二次 bout 开始时肌肉脱氧动力学显著减慢(7.2±2.2 秒对 4.4±1.2 秒),而在整个第二次 bout 期间相对氧合血红蛋白浓度升高。这些结果表明,在该代谢率下,O₂输送与 VO₂的更好匹配加快了 VO₂动力学,但并未消除增强代谢激活的潜在作用。此外,在犬原位肌肉中,第二次 bout 开始时运动单位募集的改变并非预收缩 bout 后 VO₂慢成分幅度降低的先决条件。