Lash J M
Department of Physiology and Biophysics, Indiana University School of Medicine, Indianapolis, Indiana 46202, USA.
J Appl Physiol (1985). 1998 Jul;85(1):168-74. doi: 10.1152/jappl.1998.85.1.168.
Treadmill training increases functional vasodilation in the rat spinotrapezius muscle, although there is no acute increase in blood flow and no increase in oxidative capacity. To assess concurrent changes in vascular reactivity, we measured arterial diameters in the spinotrapezius muscle of sedentary (Sed) and treadmill-trained (Tr; 9-10 wk; terminal intensity 30 m/min, 1.5 degrees incline, for 90 min) rats during iontophoretic application of norepinephrine, epinephrine (Epi), and H+ (HCl) and during superfusion with adenosine. Terminal-feed arteries and first-order arterioles in Tr rats constricted more than those in Sed rats at the higher current doses of norepinephrine and Epi. In contrast, at low-current doses of Epi, first- and second-order arterioles dilated in Tr but not in Sed rats. The vascular responses to HCl were highly variable, but second-order arterioles of Tr rats constricted more than those of Sed rats at intermediate-current doses. There were no significant differences between Sed and Tr rats in the vascular responses to adenosine. Both adrenergic vasodilation and vasoconstriction were enhanced in the spinotrapezius muscle of Tr rats, and enhanced adrenergic vasodilation may contribute to increased functional vasodilation. These observations further demonstrate vascular adaptations in "nontrained" skeletal muscle tissues.
跑步机训练可增加大鼠斜方肌的功能性血管舒张,尽管血流量无急性增加且氧化能力也无提高。为评估血管反应性的同时变化,我们在静息(Sed)和跑步机训练(Tr;9 - 10周;终末强度30米/分钟,1.5度坡度,持续90分钟)大鼠的斜方肌中,测量了去甲肾上腺素、肾上腺素(Epi)和H⁺(HCl)离子电渗给药期间以及腺苷灌注期间的动脉直径。在较高电流剂量的去甲肾上腺素和肾上腺素作用下,Tr组大鼠的终末供血动脉和一级小动脉比Sed组大鼠收缩更明显。相反,在低电流剂量的肾上腺素作用下,Tr组大鼠的一级和二级小动脉扩张,而Sed组大鼠则无此现象。对HCl的血管反应高度可变,但在中等电流剂量下,Tr组大鼠的二级小动脉比Sed组大鼠收缩更明显。Sed组和Tr组大鼠对腺苷的血管反应无显著差异。Tr组大鼠斜方肌中的肾上腺素能血管舒张和血管收缩均增强,增强的肾上腺素能血管舒张可能有助于功能性血管舒张增加。这些观察结果进一步证明了“未训练”骨骼肌组织中的血管适应性。