Estimating the total energy demand for supra-maximal exercise using the VO2-power regression from an incremental exercise test
The VO2-power regression and estimated total energy demand for a 6-minute supra-maximal exercise test was predicted from a continuous incremental exercise test. Sub-maximal VO2-power co-ordinates were established from the last 40 seconds (s) of 150-second exercise stages. The precision of the estimated total energy demand was determined using the 95% confidence interval (95% CI) of the estimated total energy demand. The linearity of the individual VO2-power regression equations was determined using Pearson's correlation coefficient. The mean 95% CI of the estimated total energy demand was 5.9 +/- 2.5 mL O2 Eq x kg(-1) x min(-1), and the mean correlation coefficient was 0.9942 +/- 0.0042. The current study contends that the sub-maximal VO2-power co-ordinates from a continuous incremental exercise test can be used to estimate supra-maximal energy demand without compromising the precision of the accumulated oxygen deficit (AOD) method.
© Copyright 2003 Journal of Science and Medicine in Sport. Elsevier. All rights reserved.
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| Notations: | training science |
| Published in: | Journal of Science and Medicine in Sport |
| Language: | English |
| Published: |
Dickson
2003
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| Online Access: | https://doi.org/10.1016/s1440-2440(03)80028-2 |
| Volume: | 6 |
| Issue: | 3 |
| Pages: | 343-347 |
| Document types: | electronical journal |
| Level: | advanced |