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Differential Glucose Uptake in Quadriceps and Other Leg Muscles During One-Legged Dynamic Submaximal Knee-Extension Exercise

机译:一腿动态超最大屈膝运动中四头肌和其他腿部肌肉的差异葡萄糖摄取

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摘要

One-legged dynamic knee-extension exercise (DKE) is a widely used model to study the local cardiovascular and metabolic responses to exercise of the quadriceps muscles. In this study, we explored the extent to which different muscles of the quadriceps are activated during exercise using positron emission tomography (PET) determined uptake of [18F]-fluoro-deoxy-glucose (GU) during DKE. Five healthy male subjects performed DKE at 25 W for 35 min and both the contracting and contralateral resting leg were scanned with PET from mid-thigh and distally. On average, exercise GU was the highest in the vastus intermedius (VI) and lowest in the vastus lateralis (VL; VI vs VL, p < 0.05), whereas the coefficient of variation was highest in VL (VL vs VI, p < 0.05). Coefficient of variation between the mean values of the four quadriceps femoris (QF) muscles in the exercising leg was 35 ± 9%. Compared to mean GU in QF (=100%), GU was on average 73% in VL, 84% in rectus femoris, 115% in vastus medialis, and 142% in VI. Variable activation of hamstring muscles and muscles of the lower leg was also observed. These results show that GU of different muscles of quadriceps muscle group as well as between individuals vary greatly during DKE, and suggests that muscle activity is not equal between quadriceps muscles in this exercise model. Furthermore, posterior thigh muscles and lower leg muscles are more active than hitherto thought even during this moderate exercise intensity.
机译:单腿动态膝盖伸展运动(DKE)是一种广泛使用的模型,用于研究股四头肌肌肉的局部心血管和代谢反应。在这项研究中,我们使用正电子发射断层扫描(PET)确定了运动过程中股四头肌的不同肌肉被激活的程度,从而确定了在运动过程中[ 18 F]-氟-脱氧葡萄糖(GU)的吸收DKE。五名健康​​的男性受试者在25 W下进行DKE 35分钟,并从大腿中部和远端用PET扫描收缩和对侧休息的小腿。平均而言,运动GU在中间臀大肌(VI)中最高,在外侧臀大肌中最低(VL; VI vs VL,p <0.05),而VL的变异系数最高(VL vs VI,p <0.05) )。运动腿部四股股四头肌(QF)肌肉的平均值之间的变异系数为35±9%。与QF中的平均GU相比(= 100%),VL的GU平均为73%,股直肌的平均为84%,内侧股的115%,VI的平均为142%。还观察到绳肌和小腿肌肉的可变激活。这些结果表明,在DKE期间,四头肌肌肉群的不同肌肉以及个体之间的GU差异很大,这表明在此运动模型中,四头肌肌肉之间的肌肉活动不相等。此外,即使在这种适度的运动强度下,大腿后部的肌肉和小腿的肌肉也比以往认为的要活跃。

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