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Physiological responses to pedaling on a water stationary bike at different immersion heights

机译:不同浸入高度下水上固定式自行车蹬踏的生理反应

摘要

Only a few studies[1-4] have investigated oxygen consumption (V’O2) and heart rate (HR) responses to pedaling on a stationary bike in water (WSB), while literature is still lacking on the effects elicited by variations in immersion depth. 14 subjects (8 M, 6 F, age 30±6y, weight 67±14kg, BMI 22.8±2.3kg/m2, fat mass 21,4±3%) performed 2 testing sessions and 2 exercise sessions: i) dry-land incremental exercise test (cycle-ergometer) to age-predicted maximum HR (HR); ii) underwater (hip-height) incremental exercise test (on a WSB) to exhaustion; iii/iv) two 2-stage (18-minutes each) underwater pedaling exercises on a WSB (Aqquatix S.r.l., Italy) at 2 different immersion heights (armpit/hip). Breath-by-breath V’O2 and beat-by-beat HR were recorded continuously throughout dry-land sessions. The intensities of the exercise sessions were 45%-55% (stage#1) and 70%-80% (stage#2) of the underwater V’O2 peak (a metronome was set at the V’O2 peak pedaling rate). A repeated-measures (2 exercise intensities) 2-way (armpit/hip heights) ANOVA was performed on each variable and the Bonferroni test was used for post-hoc comparisons. Compared to the hip-height condition, pedaling immersed at the armpit level elicited significantly lower V’O2 and HR (significant solely at high-intensity for HR) responses, either exercising at high (25.5±4.6 vs. 29.1±4.8 mL∙kg-1∙min-1; 127±14 vs. 140±19 beats∙min-1) or low (17.9±3.6 vs. 20.1±3.6 mL∙kg-1∙min-1; 105±16 vs. 110±15 beats∙min-1) intensity. While peak V’O2 didn’t differ significantly between dry-land and underwater tests (36.2±5.4 vs. 38.8±5.8 mL∙kg-1∙min-1), mean HRs at both intensities and both water heights were significantly lower when expressed as percentage of the HR resulting from the underwater test to exhaustion, rather than applying the 220-age prediction equation.
机译:只有很少的研究[1-4]研究了在水中固定自行车(WSB)上踩踏时的耗氧量(V'O2)和心率(HR)反应,而关于浸入变化的影响仍然缺乏文献报道深度。 14位受试者(8 M,6 F,年龄30±6y,体重67±14kg,BMI 22.8±2.3kg / m2,脂肪质量21.4±3%)进行了2次测试和2次运动:i)旱地递增运动测试(自行车测功机)以达到年龄预测的最大HR(HR); ii)水下(臀部高度)增量运动测试(在WSB上)至疲惫; iii / iv)在2个不同的浸入高度(腋下/臀部)上的WSB(意大利Aqquatix S.r.l.)上进行两个两阶段(每次18分钟)的水下踩踏练习。在整个旱地会议上都连续记录了呼吸频率V’O2和心跳频率HR。锻炼的强度为水下V’O2峰值(节拍器设定为V’O2峰值踩踏速度)的45%-55%(第1阶段)和70%-80%(第2阶段)。对每个变量进行重复测量(2种运动强度)2向(腋窝/臀部高度)ANOVA,并将Bonferroni检验用于事后比较。与髋部高度状况相比,沉浸在腋窝处的蹬踏可显着降低V'O2和HR(仅在高强度下对HR显着),无论是高强度运动(25.5±4.6 vs. 29.1±4.8 mL∙kg) -1∙min-1; 127±14 vs. 140±19次拍打·min-1)或低(17.9±3.6 vs. 20.1±3.6 mL∙kg-1·min-1; 105±16 vs.110±15节拍∙min-1)强度。虽然旱地和水下试验的V'O2峰值无显着差异(36.2±5.4 vs. 38.8±5.8 mL∙kg-1∙min-1),但当两个强度和两个水高时,平均HRs均显着降低。表示为从水下测试到疲惫所产生的HR的百分比,而不是应用220岁年龄的预测方程式。

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