Human Integrative Physiology Laboratory, School of Business Administration, Meiji Univ., Tokyo, Japan.
Am J Physiol Heart Circ Physiol. 2011 Aug;301(2):H609-16. doi: 10.1152/ajpheart.00076.2011. Epub 2011 May 20.
Hypoperfusion of active skeletal muscle elicits a reflex pressor response termed the muscle metaboreflex. Our aim was to determine the muscle metaboreflex threshold and gain in humans by creating an open-loop relationship between active muscle blood flow and hemodynamic responses during a rhythmic handgrip exercise. Eleven healthy subjects performed the exercise at 5 or 15% of maximal voluntary contraction (MVC) in random order. During the exercise, forearm blood flow (FBF), which was continuously measured using Doppler ultrasound, was reduced in five steps by manipulating the inner pressure of an occlusion cuff on the upper arm. The FBF at each level was maintained for 3 min. The initial reductions in FBF elicited no hemodynamic changes, but once FBF fell below a threshold, mean arterial blood pressure (MAP) and heart rate (HR) increased and total vascular conductance (TVC) decreased in a linear manner. The threshold FBF during the 15% MVC trial was significantly higher than during the 5% MVC trial. The gain was then estimated as the slope of the relationship between the hemodynamic responses and FBFs below the threshold. The gains for the MAP and TVC responses did not differ between workloads, but the gain for the HR response was greater in the 15% MVC trial. Our findings thus indicate that increasing the workload shifts the threshold for the muscle metaboreflex to higher blood flows without changing the gain of the reflex for the MAP and TVC responses, whereas it enhances the gain for the HR response.
在主动运动的骨骼肌中,灌注不足会引发一种被称为肌肉代谢反射的加压反射反应。我们的目的是通过在手握运动过程中建立主动肌肉血流和血液动力学反应之间的开环关系,来确定人体的肌肉代谢反射阈值和增益。11 名健康受试者以 5%或 15%的最大自主收缩(MVC)的随机顺序进行运动。在运动过程中,使用超声多普勒连续测量前臂血流量(FBF),通过操纵上臂袖带的内部压力,将 FBF 分 5 个阶段逐渐降低。每个水平的 FBF 维持 3 分钟。最初的 FBF 降低不会引起血液动力学变化,但一旦 FBF 降至阈值以下,平均动脉血压(MAP)和心率(HR)就会线性增加,总血管传导性(TVC)就会降低。在 15%MVC 试验中,阈值 FBF 明显高于 5%MVC 试验。然后,将该阈值以下的血液动力学反应和 FBF 之间的关系的斜率估计为增益。MAP 和 TVC 反应的增益在工作量之间没有差异,但 HR 反应的增益在 15%MVC 试验中更大。因此,我们的研究结果表明,增加工作量会将肌肉代谢反射的阈值转移到更高的血流量,而不会改变 MAP 和 TVC 反应的反射增益,而会增强 HR 反应的增益。