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Differences in Physiological Responses During Rowing and Cycle Ergometry in Elite Male Rowers

机译:优秀男性赛艇运动员划船和骑自行车测功期间生理反应的差异

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摘要

Cycle training is an important training modality of elite rowers. Cycling is the preferred alternative to on-water and ergometer rowing as it provides a reduction in compressive forces on the thoracic cage and upper extremities while still creating a local and central acclimation to endurance training. It is hypothesised, however, that there will be differences in physiological characteristics between Concept II (CII) rowing and WattBike (WB) cycling due to the principle regarding the specificity of training that elite rowers undertake. Understanding these differences will ensure more accurate training prescription when cycling. Twenty international level male rowers, [V˙O2PEAK 5.85 ± 0.58 L.min−1 (CI ± 0.26 L.min−1)] participated in two identical discontinuous incremental exercise tests on a CII rowing and WB cycle ergometer. Ergometer modalities were randomised and counterbalanced among the group and tests occurred 7 days apart. V˙O2, V˙CO2, V˙E(STPD) and HR were significantly higher for every submaximal power output on the CII compared with the WB. Maximal power output on the WB was higher than on the CII [42 ± 33 W (CI ± 14 W) p < 0.000] but V˙O2PEAK was similar between modalities. Minute ventilation at maximal exercise was 11 L.min−1 lower on CII than on WB. When data were expressed relative to modality specific V˙O2PEAK, power output was consistently lower on the CII as was submaximal V˙CO2, RER, RPE, mechanical efficiency and BLa concentration at 75% V˙O2PEAK. Across all power outputs and exercise modalities, 77% of the variance in RPE could be explained by the variance in BLa. These results demonstrate that elite rowers can attain similar V˙O2PEAK scores regardless of modality. Substantial physiological and metabolic differences are evident between CII rowing and WB cycling when power output is the independent variable with the latter being over 40 W higher. The difference in displayed power output between the ergometer modalities is attributed to differences in mechanical efficiency and a degree of power output not being accounted for on the CII ergometer. Given the lack of consistency between CII and WB power output, other physiological measures, such as HR, are better suited to prescribe WB ergometer sessions.
机译:周期训练是精英赛艇运动员的重要训练方式。骑自行车是水上划船和测功计划船的首选替代方法,因为它可降低胸廓和上肢的压力,同时仍可为耐力训练带来局部和中央适应性。但是,假设由于精英赛艇运动员所进行的训练的特殊性原则,概念II(CII)赛艇和WattBike(WB)自行车之间的生理特性会有差异。了解这些差异将确保骑自行车时更准确的训练处方。二十位国际水平的男性赛艇运动员,[<数学xmlns:mml =“ http://www.w3.org/1998/Math/MathML” id =“ M1”溢出=“ scroll”> <移动者accent =“ true”> < mtext> V ˙ O2PEAK 5.85±0.58 L.min -1 (CI±0.26 L.min - 1 )]在CII划船和WB自行车测功仪上参加了两个相同的不连续增量运动测试。测力计的方式在各组之间是随机的和平衡的,测试间隔7天。 <移动器重音=“ true”> V ˙ O2, V ˙ CO2, V ˙ E(STPD)和HR均显着更高。 WB上的最大功率输出高于CII [42±33 W(CI±14 W)p <0.000],但是 V ˙ O2PEAK在两种模式之间是相似的。在最大运动量时,CII的通气量比WB低11 L.min -1 。相对于模态特定的 <移动器重音=“ true”> V ˙ O2PEAK,CII上的功率输出始终较低,而 V ˙ < / math> CO2,RER,RPE,机械效率和BLa浓度为75% V ˙ O2PEAK。在所有力量输出和锻炼方式中,RPE中77%的差异可以用BLa中的差异来解释。这些结果表明,精英赛艇手可以获得类似的 V ˙ O2PEAK得分,无论采用何种形式。当功率输出是自变量且后者高40 W以上时,在CII划船和WB循环之间存在明显的生理和代谢差异。测功机模式之间显示的输出功率的差异归因于机械效率的差异以及CII测功机上未考虑的输出功率的程度。鉴于CII和WB功率输出之间缺乏一致性,因此其他生理测量方法(例如HR)更适合于规定WB测功机会话。

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