老年受试者在渐进式划船和自行车运动中的通气阈值特征。

Fabien Deruelle, Jean-Marie Brosbois, Patrick Mucci, Frédéric Bart, Ghislaine Lensel, Claudine Fabre
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引用次数: 5

摘要

为了对健康老年人在不同测力仪上进行的有氧训练计划的强度进行个体化,我们分析了8名男性(65.7 +/- 4.5岁)和10名女性(63.3 +/- 4.8岁)的心肺反应。与通气阈值相对应的心率被定义为个体化的运动强度。所有受试者都在自行车和划船测力仪上进行了两次增量运动测试。对于男性,在自行车计力器和划船计力器上的结果表明,在通气阈值下,心率没有显著差异(分别为114.6 +/- 13.7和115.6 +/- 14.2次x min(-1)),但划船时的通气量明显更高(p < 0.05)。在通气阈值下,女性的心率在自行车计量器和划船计量器之间没有显著差异(分别为121.3 +/- 12.4和125.1 +/- 15.2次x min(-1)),但划船计量器的通气量明显更高(p< 0.01)。最大运动时,赛艇运动中男性(p < 0.01)和女性(p < 0.05)的最大潮气量显著高于其他运动。尽管划船测力器上的呼吸模式会发生变化,但我们还是有可能为健康的老年人设计一个基于单一肌肉评估运动的个性化训练计划,以便在有氧训练计划之后多样化和优化心肺益处。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Ventilatory threshold characterizations during incremental rowing and cycling exercises in older subjects.

In order to individualize the intensity of an aerobic training program on different ergometers in healthy elderly subjects using a single test of muscular exercise, we analysed cardiorespiratory responses in 8 men (65.7 +/- 4.5 yrs) and 10 women (63.3 +/- 4.8 yrs). The heart rate corresponding to the ventilatory threshold was defined as individualised exercise intensity. All subjects carried out two incremental exercise tests on the cycle and rowing ergometers. For men, the results on the cycle ergometer and rowing ergometer demonstrated that, at ventilatory threshold, heart rates were not significantly different (114.6 +/- 13.7 and 115.6 +/- 14.2 beats x min (-1), respectively), but ventilation was significantly higher in rowing (p < 0.05). At ventilatory threshold, heart rates for women were not significantly different between the cycle ergometer and rowing ergometer (121.3 +/- 12.4 and 125.1 +/- 15.2 beats x min (-1 ), respectively), but ventilation was significantly higher in rowing (p< 0.01). At maximal exercise, maximal tidal volume for men (p < 0.01) and women (p < 0.05) was significantly higher in rowing. In spite of alterations of breathing patterns on the rowing ergometer, it is possible to design an individualized training program for healthy elderly subjects based on a single muscle evaluation exercise in order to diversify and optimize the cardiorespiratory benefits following an aerobic training program.

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