Accurate prediction of VO2max in cycle ergometry

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Deutscher übersetzter Titel:Genaue Bestimmung der VO2max bei Fahrradergometrie
Autor:Storer, Thomas W.; Davis, James A.; Caiozzo, Vincent J.
Erschienen in:Medicine and science in sports and exercise
Veröffentlicht:22 (1990), 5, S. 704-712, Lit.
Format: Literatur (SPOLIT)
Publikationstyp: Zeitschriftenartikel
Medienart: Gedruckte Ressource
Sprache:Englisch
ISSN:0195-9131, 1530-0315
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Erfassungsnummer:PU199302047043
Quelle:BISp

Abstract

Numerous equations exist for predicting VO2max from the duration (an analog of maximal work rate, Wmax) of a treadmill graded exercise test (GXT). Since a similar equation for cycle ergometry (CE) was not available, we saw the need to develop such an equation, hypothesizing that CE VO2max could be accurately predicted due to its more direct relationship with W. Thus, healthy, sedentary males (N = 115) and females (N = 116), aged 20-70 yr, were given a 15 W/min CE GXT. The following multiple linear regression equations which predict VO2max (Ml/min) from the independent variables of Wmax (W), body weight (kg), and age (yr) were derived from our subjects: Males: Y = 10.51 (W) + 6.35 (kg) - 10.49 (yr) + 519.3 ml/min; R = 0.939, SEE = 212 ml/min. Females: Y = 9.39 (W) + 7.7 (kg) - 5.88 (yr) + 136.7 ml/min; R = 0.932, SEE = 147 ml/min. Using the 95 confidence limits as examples of worst case errors, our equations predict VO2max to within 10 of its true value. Internal (double cross-validation) and external cross-validation analyses yielded r values ranging between 0.920 and 0.950 for the male and female regression equations. These results indicate that use of the equations generated in this study for a 15 W/min CE GXT provides accurate estimates of VO2max. Verf.-Referat