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Arm blood flow and metabolism during arm and combined arm and leg exercise in humans

机译:人类手臂以及手臂和腿部联合运动期间的手臂血液流动和新陈代谢

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摘要

The cardiovascular response to exercise with several groups of skeletal muscle suggests that work with the arms may decrease leg blood flow. This study evaluated whether intense exercise with the legs would have a similar effect on arm blood flow (Q̇arm) and O2 consumption (V̇O2,arm). Ten healthy male subjects (age 21 ± 1 year; mean ± S.D.) performed arm cranking at 80 % of maximum arm work capacity (A trial) and combined arm cranking with cycling at 60 % of maximum leg work capacity (A + L trial). The combined trial was a maximum effort for 5-6 min. Q̇arm measurement by thermodilution in the axilliary vein and arterial and venous blood samples permitted calculation of V̇O2,arm. During the combined trial, Q̇arm was reduced by 0.58 ± 0.25 l min−1 (19.1 ± 3.0 %, P < 0.05) from the value during arm cranking (3.00 ± 0.46 l min−1). The arterio-venous O2 difference increased from 122 ± 15 ml l−1 during the arm trial to 150 ± 21 ml l−1 (P < 0.05) during the combined trial. Thus, V̇O2,arm (0.45 ± 0.06 l min−1) was reduced by 9.6 ± 6.3 % (P < 0.05) and arm vascular conductance from 27 ± 4 to 23 ± 3 ml min−1 (mmHg)−1 (P < 0.05) as noradrenaline spillover from the arm increased from 7.5 ± 3.5 to 13.8 ± 4.2 nmol min−1 (P < 0.05). The data suggest that during maximal whole body exercise in humans, arm vasoconstriction is established to an extent that affects oxygen delivery to and utilisation by working skeletal muscles.
机译:几组骨骼肌对运动的心血管反应表明,手臂锻炼可能会减少腿部血液流动。这项研究评估了用腿进行剧烈运动是否会对手臂血流量(Q̇arm)和O2消耗(V̇O2,arm)有相似的影响。十名健康男性受试者(年龄21±1岁;平均数±SD)以最大手臂工作能力的80%进行曲柄摇动(一项试验),并以最大腿部工作能力的60%进行骑行曲柄与骑行的结合(A + L试验) 。联合试验是最大的努力,持续5-6分钟。通过在腋静脉以及动静脉血液样本中进行热稀释进行Q臂测量,可以计算V̇O2,臂。在联合试验中,Q̇arm从摇臂时的值(3.00±0.46 l min -1)减少了0.58±0.25 l min -1 (19.1±3.0%,P <0.05) )。动臂氧合的差异从手臂试验期间的122±15 ml l -1 增加到联合试验期间的150±21 ml l -1 (P <0.05) 。因此,手臂的V̇O2(0.45±0.06 l min -1 )降低了9.6±6.3%(P <0.05),手臂血管电导从27±4降低至23±3 ml min −1 (mmHg) −1 (P <0.05)是因为去甲肾上腺素从手臂的溢出量从7.5±3.5增加到13.8±4.2 nmol min -1 ( P <0.05)。数据表明,在人体进行最大程度的全身运动期间,手臂血管收缩的程度会影响到人体骨骼肌的氧气输送和利用。

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