Michikami D, Kamiya A, Fu Q, Cui J, Usui H, Atsuta S, Niimi Y, Iwase S, Mano T
Department of Autonomic Neuroscience, Research Institute of Environmental Medicine, Nagoya University, Nagoya, Japan.
J Gravit Physiol. 2000 Jul;7(2):P175-6.
Decrease in muscle perfusion affects on cardiovascular response to exercise. Muscle hypoperfusion enhances the increase in blood pressure responses to exercise. Muscle perfusion depends not only on central blood pressure but also how fit the active muscle is above or below the heart level; muscle perfusion decreases as arm is elevated. Static exercise increases muscle sympathetic nerve activity (MSNA) innervating vessels in non-active muscles. The exercise-induced increase in MSNA is mainly mediated by stimulating chemosensitive muscle afferents in active muscles. However, the effect of arm elevation on MSNA during forearm exercise is not examined. On the other hand, space flight and simulated microgravity exposure causes reduction in muscle blood flow, suggesting chronic muscle hypoperfused condition during simulated microgravity. Therefore, there is a possibility that arm elevation after microgravity exposure alters MSNA responsiveness during exercise. However, arm elevation effect after exposure to simulated microgravity is not examined.
肌肉灌注减少会影响心血管对运动的反应。肌肉灌注不足会增强运动时血压反应的升高。肌肉灌注不仅取决于中心血压,还取决于活动肌肉相对于心脏水平的健康状况;手臂抬高时肌肉灌注会降低。静态运动可增加支配非活动肌肉血管的肌肉交感神经活动(MSNA)。运动引起的MSNA增加主要是通过刺激活动肌肉中的化学敏感肌肉传入神经介导的。然而,前臂运动期间手臂抬高对MSNA的影响尚未得到研究。另一方面,太空飞行和模拟微重力暴露会导致肌肉血流量减少,这表明在模拟微重力期间存在慢性肌肉灌注不足的情况。因此,微重力暴露后手臂抬高有可能改变运动期间的MSNA反应性。然而,暴露于模拟微重力后的手臂抬高效应尚未得到研究。