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- W2000648737 abstract "There is limited information on validation of the ACSM Arm Cycling equation for predicting oxygen consumption in men during submaximal arm ergometry. The ACSM prediction equation has been reported to be most accurate for power outputs ranging from 25-125 watts and is also based on the assumption of steady-state exercise. PURPOSE: To investigate differences in measured versus predicted (ACSM Arm Cycling equation) oxygen consumption (VO2) during submaximal arm ergometry in men. METHODS: 10 males (mean age ± SD: 22.91 ± 2.39 yrs) underwent a graded maximal arm ergometry test to determine peak oxygen uptake (VO2). On a separate day, subjects completed two, 15-minute submaximal workloads (40% and 60% of maximal workload) administered in a randomized order. VO2 data were averaged over the whole time duration. Differences between predicted and measured VO2's were analyzed via a repeated measures analysis of variance procedure. RESULTS: The mean ± SD VO2 peak was 26.55 ± 2.61 ml·kg-1·min-1. There were significant differences (p<0.05) in the directly measured versus predicted VO2 data across the workloads used in this study as shown in the table below. Across the full range of workloads utilized in this study (20-54 watts), the ACSM Arm Cycling prediction equation under-predicted VO2 by an average of 30.6 ± 4.79%.TableCONCLUSION: These results indicate a consistent under-prediction of the estimated energy cost of steady-state arm cycling using the ACSM arm cycling equation." @default.
- W2000648737 created "2016-06-24" @default.
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- W2000648737 date "2009-05-01" @default.
- W2000648737 modified "2023-09-25" @default.
- W2000648737 title "A Comparison Of Directly Measured Versus Predicted Energy Cost Of Upper Body Exercise In Men" @default.
- W2000648737 doi "https://doi.org/10.1249/01.mss.0000353654.79210.34" @default.
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