首页> 外文期刊>The Journal of Physiology >Muscle metabolism during graded quadriceps exercise in man.
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Muscle metabolism during graded quadriceps exercise in man.

机译:在人的四头肌分级锻炼过程中的肌肉代谢。

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The aim of the study was to examine local muscle metabolism in response to graded exercise when the involved muscle mass is too small to elicit marked hormonal changes and local blood flow restriction. Nine healthy overnight fasted male subjects performed knee extension exercise with both thighs kicking at 25% of maximal power (Wmax) for 45 min (23+/-1% of pulmonary) followed by 35 min of kicking with one thigh at 65% and the other at 85% W(max) (40+/-1% ). Primed constant infusion of [U-13C] palmitate and [2H5]glycerol was carried out. Blood was sampled from a femoral artery and both femoral veins, and thigh blood flow was determined by thermodilution. Muscle biopsies were obtained from m. vastus lateralis of both thighs. From rest through exercise at 25, 65 and 85% Wmax the thigh blood flow (0.3+/-0.1, 2.5+/-0.2, 3.5+/-0.2, 4.1+/-0.3 l min(-1)) and oxygen uptake (0.02+/-0.01, 0.27+/-0.03, 0.48+/-0.04, 0.55+/-0.05 l min(-1)) increased (P<0.05). The plasma fatty acids oxidized in the thigh (5+/-1, 114+/-15, 162+/-30, 180+/-31 micromol min(-1)) increased (P<0.05) with exercise intensity, whereas the total thigh fat oxidation (19+/-6, 312+/-64, 356+/-93, 323+/-120 micromol min(-1)) increased (P<0.05) from rest, but remained unchanged through exercise. The thigh glycerol uptake (1+/-1, 16+/-4, 24+/-10, 39+/-8 micromol min(-1)) increased significantly from rest through exercise at 25-65 and 85% Wmax, respectively. Glucose uptake and glycogen breakdown always increased with exercise intensity. In conclusion, in the presence of a high blood flow and oxygen supply and only small hormonal changes, total fat oxidation in muscle increases from rest to light exercise, but then remains constant with exercise intensity up to heavy exercise. However, with increasing exercise intensity, oxidation of plasma free fatty acids increases and accordingly oxidation of other fat sources decreases. These findings are in contrast to whole body measurements performed during graded exercise involving a large muscle mass during which fat oxidation peaks at around 60% of .
机译:该研究的目的是在累加的肌肉量太小而无法引起明显的荷尔蒙变化和局部血流受限时,检查分级运动后局部肌肉的新陈代谢。九名健康的过夜禁食男性受试者进行了膝盖伸展运动,两个大腿以最大力量(Wmax)的25%踢了45分钟(肺的23 +/- 1%),然后以65%的一个大腿踢了35分钟。其他为85%W(max)(40 +/- 1%)。灌注了[U-13C]棕榈酸酯和[2H5]甘油的灌注液。从股动脉和两条股静脉中采集血液,并通过热稀释法测定大腿的血流量。肌肉活检取自m。大腿外侧股外侧。在25、65和85%Wmax时从休息到运动,大腿血流量(0.3 +/- 0.1、2.5 +/- 0.2、3.5 +/- 0.2、4.1 +/- 0.3 l min(-1))和摄氧量(0.02 +/- 0.01、0.27 +/- 0.03、0.48 +/- 0.04、0.55 +/- 0.05 l min(-1))增加(P <0.05)。大腿上氧化的血浆脂肪酸(5 +/- 1、114 +/- 15、162 +/- 30、180 +/- 31 micromol min(-1))随着运动强度增加(P <0.05)大腿脂肪的总氧化(19 +/- 6,312 +/- 64,356 +/- 93,323 +/- 120 micromol min(-1))休息时增加(P <0.05),但运动后保持不变。在25-65 Wmax和85%Wmax的运动下,大腿甘油的摄取(1 +/- 1、16 +/- 4、24 +/- 10、39 +/- 8 micromol min(-1))显着增加。分别。葡萄糖摄取和糖原分解总是随着运动强度而增加。总之,在高血流量和氧气供应且荷尔蒙变化很小的情况下,肌肉的总脂肪氧化程度从休息到轻度运动都会增加,但在运动强度直至重度运动中都保持恒定。然而,随着运动强度的增加,血浆游离脂肪酸的氧化增加,因此其他脂肪来源的氧化减少。这些发现与分级运动期间涉及大块肌肉的全身测量相反,在此期间,脂肪氧化在的60%左右达到峰值。

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