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Physiological responses during an incremental exercise test performed on underwater stationary bike

机译:在水下固定式自行车上进行增量运动试验期间的生理反应

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Purpose Cycling underwater is a low impact physical activity that has became popular workout due to capability to enhance physical fitness. The aim of this study was to determine the relationship between pedal cadence with heart rate (HR) and oxygen uptake (VO_2) during incremental exercise test in a novel adjustable resistance bike underwater. Methods Fifteen participants completed three incremental cycling tests in a random order. Each test began at 50 revolutions per minute (RPM) and increased 3 RPM every minute until volitional exhaustion. The bike has the unique ability to manipulate the frontal surface area (FSA) of the blades providing three different resistance settings for the same RPM (FSA_1 = 500 cm~2, FSA_2 = 580 cm~2, and FSA_3 = 660 cm~2). Results The findings indicated a strong linear relationship between RPM vs. %VO_(2peak) and RPM vs. %HR_(peak) in all FSA conditions (r = 0.98-0.99). In addition, the results showed a significant lower peak cadence for the FSA3 setting compared to the other conditions (p < 0.05). However, there were no differences in maximal physiological responses between all frontal area conditions. Conclusions Therefore, the developed exercise prescription on the novel stationary bike needs to consider the FSA of the blades due to differences found in the predictive values of VO2 and HR for the same pedal cadence.
机译:目的循环水下是一种低冲击的身体活动,由于能力提高身体健康而成为流行的锻炼。本研究的目的是在新颖的可调节阻力自行车中,确定在新型可调节抗性自行车中的增量运动试验期间与心率(HR)和氧吸收(VO_2)之间的关系。方法十五个参与者以随机顺序完成三个增量循环试验。每次测试开始于每分钟50转(rpm),每分钟增加3 rpm,直至无与伦比。自行车具有以相同的RPM提供三种不同电阻设置的刀片的正面表面(FSA)的独特能力(FSA_1 = 500cm〜2,FSA_2 = 580cm〜2,以及FSA_3 = 660cm〜2) 。结果结果表明,在所有FSA条件下,RPM与%VO_(2PEAK)和RPM与%HR_(峰值)之间的强烈线性关系(r = 0.98-0.99)。此外,结果表明,与其他条件相比,FSA3设定的显着较低的峰值焦点(P <0.05)。然而,所有正面区域条件之间的最大生理反应没有差异。因此,由于vo2和人力资源的预测值为所发现的差异,对新型固定式自行车的发达的运动处方需要考虑叶片的FSA。

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