首页> 外文期刊>Journal of bone and mineral research: the official journal of the American Society for Bone and Mineral Research >Heinonen, I.a b c , Kemppainen, J.a d , Kaskinoro, K.e , Langberg, H.f , Knuuti, J.a , Boushel, R.g , Kjaer, M.h , Kalliokoski, K.K.a Bone blood flow and metabolism in humans: Effect of muscular exercise and other physiological perturbations
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Heinonen, I.a b c , Kemppainen, J.a d , Kaskinoro, K.e , Langberg, H.f , Knuuti, J.a , Boushel, R.g , Kjaer, M.h , Kalliokoski, K.K.a Bone blood flow and metabolism in humans: Effect of muscular exercise and other physiological perturbations

机译:Heinonen,Ibc,Kemppainen,Jad,Kaskinoro,Ke,Langberg,H.f,Knuuti,J.a,Boushel,R.g,Kjaer,M.h,Kalliokoski,K.K。

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Human bone blood flow and metabolism during physical exercise remains poorly characterized. In the present study we measured femoral bone blood flow and glucose uptake in young healthy subjects by positron emission tomography in three separate protocols. In 6 women, blood flow was measured in femoral bone at rest and during one-leg intermittent isometric exercise with increasing exercise intensities. In 9 men, blood flow in the femur was determined at rest and during dynamic one-leg exercise and two other physiological perturbations: moderate systemic hypoxia (14 O2) at rest and during exercise, and during intrafemoral infusion of high-dose adenosine. Bone glucose uptake was measured at rest and during dynamic one-leg exercise in 5 men. The results indicate that isometric exercise increased femoral bone blood flow from rest (1.8 ± 0.6 mL/100 g/min) to low intensity exercise (4.1 ± 1.5 mL/100 g/min, p = 0.01), but blood flow did not increase further with increasing intensity. Resting femoral bone blood flow in men was similar to that of women and dynamic one-leg exercise increased it to 4.2 ± 1.2 mL/100 g/min, p 0.001. Breathing of hypoxic air did not change femoral bone blood flow at rest or during exercise, but intra-arterial infusion of adenosine during resting conditions increased bone blood flow to 5.7 ± 2.4 mL/100 g/min, to the level of moderate-intensity dynamic exercise. Dynamic one-leg exercise increased femoral bone glucose uptake 4.7-fold compared to resting contralateral leg. In conclusion, resting femoral bone blood flow increases by physical exercise, but appears to level off with increasing exercise intensities. Moreover, although moderate systemic hypoxia does not change bone blood flow at rest or during exercise, intra-arterially administered adenosine during resting conditions is capable of markedly enhancing bone blood flow in humans. Finally, bone glucose uptake also increases substantially in response to exercise.
机译:体育锻炼过程中人骨的血流和新陈代谢仍然不明确。在本研究中,我们通过正电子发射断层扫描在三种不同的方案中测量了年轻健康受试者的股骨血流量和葡萄糖摄取。在6名妇女中,随着运动强度的增加,在休息和单腿间歇性等距锻炼期间测量了股骨的血流量。在9名男性中,确定了休息时和动态单腿运动时股骨的血流以及另外两个生理扰动:休息时和运动中以及大剂量腺苷股内输注时的中度全身性缺氧(14 O2)。在5名男性的静止和动态单腿运动期间测量了其骨骼葡萄糖摄取。结果表明,等距锻炼增加了股骨的血液流动,从休息(1.8±0.6 mL / 100 g / min)到低强度锻炼(4.1±1.5 mL / 100 g / min,p = 0.01),但血流没有增加随着强度的增加。男性的股骨静息血流与女性相似,动态单腿运动将其增加至4.2±1.2 mL / 100 g / min,p <0.001。在休息时或运动期间呼吸低氧空气不会改变股骨的骨血流量,但是在休息状态下动脉内注入腺苷会增加骨血流量至5.7±2.4 mL / 100 g / min,达到中等强度动态行使。与静止的对侧小腿相比,动态单腿运动增加了股骨骨糖摄取的4.7倍。总之,体育锻炼增加了股骨静息血流,但随着运动强度的增加,股骨血流趋于平稳。此外,尽管中度全身性缺氧不会改变休息或运动期间的骨血流量,但是在休息状态下动脉内施用的腺苷能够显着增强人类的骨血流量。最后,响应运动,骨糖摄取也显着增加。

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