首页> 外文期刊>European Journal of Applied Physiology >Is the balance between skeletal muscular metabolic capacity and oxygen supply capacity the same in endurance trained and untrained subjects?
【24h】

Is the balance between skeletal muscular metabolic capacity and oxygen supply capacity the same in endurance trained and untrained subjects?

机译:在耐力训练和未训练的受试者中,骨骼肌代谢能力和供氧能力之间的平衡是否相同?

获取原文
获取原文并翻译 | 示例
           

摘要

We attempted to test whether the balance between muscular metabolic capacity and oxygen supply capacity in endurance-trained athletes (ET) differs from that in a control group of normal physically active subjects by using exercises with different muscle masses. We compared maximal exercise in nine ET subjects [Maximal oxygen uptake (VO2max) 64 ml kg−1 min−1 ± SD 4] and eight controls (VO2max 46 ± 4 ml kg−1 min−1) during one-legged knee extensions (1-KE), two-legged knee extensions (2-KE) and bicycling. Maximal values for power output (P), VO2max, concentration of blood lactate ([La−]), ventilation (VE), heart rate (HR), and arterial oxygen saturation of haemoglobin (SpO2) were registered. P was 43 (2), 89 (3) and 298 (7) W (mean ± SE); and VO2max: 1,387 (80), 2,234 (113) and 4,115 (150) ml min−1) for controls in 1-KE, 2-KE and bicycling, respectively. The ET subjects achieved 126, 121 and 126% of the P of controls (p < 0.05) and 127, 124, and 117% of their VO2max (p < 0.05). HR and [La−] were similar for both groups during all modes of exercise, while VE in ET was 147 and 114% of controls during 1-KE and bicycling, respectively. For mass-specific VO2max (VO2max divided by the calculated active muscle mass) during the different exercises, ET achieved 148, 141, and 150% of the controls’ values, respectively (p < 0.05). During bicycling, both groups achieved 37% of their mass-specific VO2 during 1-KE. Finally we conclude that ET subjects have the same utilization of the muscular metabolic capacity during whole body exercise as active control subjects.
机译:我们试图通过使用不同的肌肉质量来测试耐力训练运动员(ET)的肌肉代谢能力和供氧能力之间的平衡是否不同于对照组的正常体育锻炼对象。我们比较了9名ET受试者的最大运动量[最大摄氧量(VO2 max)64 ml kg-1 min-1 ±SD 4]和8个对照组(VO2 max在单腿膝盖伸展运动(1-KE),两腿膝盖伸展运动(2-KE)和骑自行车的过程中为46±4 ml kg-1(sup> min-1 )。功率输出(P),VO2 最大值,血乳酸浓度([La − ]),通气量(VE),心率(HR)和血红蛋白的动脉血氧饱和度(SpO2)的最大值)进行了注册。 P为43(2),89(3)和298(7)W(平均±SE);和VO2 max:分别用于1-KE,2-KE和自行车骑行中的控件的1,387(80),2,234(113)和4,115(150)ml min-1 )。 ET组受试者分别达到了对照组P的126%,121%和126%(p <0.05),最大VO2 max达到了127%,124%和117%(p <0.05)。在所有运动方式下,两组的HR和[La-]相似,而在1-KE和骑自行车期间,ET中的VE分别为对照组的147%和114%。对于不同锻炼期间特定质量的VO2 max(VO2 max除以计算出的活动肌肉质量),ET分别达到了对照值的148%,141%和150%(p <0.05) )。在骑自行车期间,两组在1-KE期间均达到其质量特异性VO2 的37%。最后,我们得出结论,ET受试者在全身运动过程中的肌肉代谢能力与主动控制受试者的利用率相同。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号