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Concurrent and Construct Validation of a Scale for Rating Perceived Exertion in Aquatic Cycling for Young Men

机译:并发和构造验证量表的年轻人在水上自行车运动中的感知运动量

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摘要

Aquatic cycling is a program of physical exercises performed with immersed stationary bikes. Few studies have provided evidence about the intensity control during its practice. Therefore, the primary aim of this study was to examine the concurrent and construct validity of a new scale for rating perceived exertion (RPE) during aquatic cycling in young men. Thirty physically active, healthy young men performed a load-incremented aquatic cycle ergometer protocol. Concurrent validity was established by correlating the Aquatic Cycling Scale (ACS) with oxygen uptake, pulmonary ventilation (VE), heart rate (HR), and blood lactate concentration (BL) responses to the maximal load-incremental test. Construct validity was established by correlating RPE derived from the Aquatic Cycling Scale (0–10) from the Borg Scale (6–20). RPE-overall, maximal oxygen uptake (VO ), oxygen uptake indexed to body weight (VO ), VE, HR, and BL were measured during each exercise stage. The range of exercise responses across the incremental test were VO = 1.07–3.55 L/min, VO = 14.26–46.89 ml/Kg/min, VE = 23.17–138.57 L/min, HR = 99.54–173.31 beats/min, BL= 1.18–11.63 mM, ACS RPE-overall = 1.11–9.33. Correlation/regression analyses showed ACS RPE as a positive linear function of VO (r = 0.78; p < 0.05), VO (r = 0.87; p < 0.05), VE (r = 0.86; p < 0.05), HR (r = 0.77; p < 0.05), and BL (r = 0.85; p < 0.05). RPE-ACS distributed as a positive linear function of the RPE-Borg Scale (r = 0.97; p < 0.05). ANOVA indicated that an incremental pedalling cadence of 15 revolutions per minute (rpm) provoked significant differences (p < 0.05) regarding previous stages in the majority of the variables analysed. The Aquatic Cycling Scale is an appropriate tool for monitoring exertion intensity during aquatic cycling in fit men. A brief increment in aquatic pedalling cadence of 15 rpm increases the intensity of the aquatic pedalling exercise.
机译:水上自行车运动是使用沉浸式固定自行车进行的体育锻炼程序。很少有研究提供有关强度控制过程中的证据。因此,本研究的主要目的是检查新的量表的同时性和有效性,该量表用于评估年轻男子水上骑行期间的感知劳累(RPE)。 30名身体活跃,健康的年轻人进行了负荷增加的水上自行车测功计协议。通过将水生循环量表(ACS)与摄氧量,肺通气量(VE),心率(HR)和血液乳酸浓度(BL)对最大负荷增量测试的反应相关联,可以建立并发有效性。通过关联来自博格量表(6-20)的水生自行车量表(0-10)的RPE来确定构建体的有效性。在每个运动阶段均测量RPE的总体最大摄氧量(VO),与体重(VO),VE,HR和BL指数相关的摄氧量。增量测试中的运动反应范围为VO = 1.07–3.55 L / min,VO = 14.26–46.89 ml / Kg / min,VE = 23.17–138.57 L / min,HR = 99.54–173.31次/ min,BL = 1.18–11.63 mM,ACS RPE总体= 1.11–9.33。相关/回归分析显示ACS RPE是VO(r = 0.78; p <0.05),VO(r = 0.87; p <0.05),VE(r = 0.86; p <0.05),HR(r = 0.77; p <0.05)和BL(r = 0.85; p <0.05)。 RPE-ACS作为RPE-Borg量表的正线性函数分布(r = 0.97; p <0.05)。方差分析表明,在大多数已分析变量中,与前一阶段相比,每分钟15转(rpm)的递增踩踏节奏引起了显着差异(p <0.05)。水上骑行量表是用于监测健康男子水上骑行过程中劳累强度的合适工具。以15 rpm的速度短暂增加水上蹬踏运动的强度。

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