Yoshizawa Mutsuko, Shimizu-Okuyama Shizuyo, Kagaya Atsuko
Institute of Health and Sport Sciences, University of Tsukuba, Ibaraki, Japan.
Eur J Appl Physiol. 2008 Jul;103(5):509-14. doi: 10.1007/s00421-008-0740-8. Epub 2008 Apr 19.
We studied the effect of exercise intensity and duration on blood flow to the non-exercising leg during one-legged dynamic knee extension. Femoral arterial blood flow (FBF) to the non-exercising leg, blood pressure (BP), and heart rate (HR) were monitored during one-legged dynamic knee extension exercise at 15, 30, and 45% maximal voluntary contraction (MVC) in seven healthy females. There was an interaction between exercise intensity and duration for FBF and FVC (P < 0.01). During the initial phase of contralateral leg exercise at all intensities, FBF and femoral vascular conductance (FVC) of non-exercising leg increased, and the increase was larger at higher intensities (P < 0.01). After initial vasodilatation, FBF and FVC decreased to baseline, which suggests the vasoconstriction. However, FBF and FVC gradually increased during exercise at 15% MVC. We conclude that transient vasodilatation at the onset of exercise is followed by gradual change to vasoconstriction in non-exercising limb during dynamic one-legged exercise and these changes are exercise intensity- and duration-dependent.
我们研究了在单腿动态膝关节伸展过程中,运动强度和持续时间对非运动腿血流的影响。在7名健康女性进行单腿动态膝关节伸展运动时,分别以最大自主收缩(MVC)的15%、30%和45%进行运动,监测非运动腿的股动脉血流量(FBF)、血压(BP)和心率(HR)。FBF和FVC的运动强度与持续时间之间存在交互作用(P<0.01)。在对侧腿运动的初始阶段,所有强度下非运动腿的FBF和股血管传导率(FVC)均增加,且在较高强度下增加幅度更大(P<0.01)。初始血管舒张后,FBF和FVC降至基线,这表明血管收缩。然而,在15%MVC运动期间,FBF和FVC逐渐增加。我们得出结论,在动态单腿运动期间,非运动肢体在运动开始时出现短暂的血管舒张,随后逐渐转变为血管收缩,且这些变化取决于运动强度和持续时间。