VO<sub>2max</sub> prediction based on submaximal cardiorespiratory relationships and body composition in male runners and cyclists: a population study.
prospective_cohort · Level II
Where this comes from
- Record sourced from PubMed, PMID 37162318.
- Also identified by DOI 10.7554/eLife.86291 and PMC identifier 10198721.
- Licence recorded as CC BY.
- The licence permits redistribution, so the abstract is shown in full and the full text is available from the publisher.
Abstract
Oxygen uptake (VO<sub>2</sub>) is one of the most important measures of fitness and critical vital sign. Cardiopulmonary exercise testing (CPET) is a valuable method of assessing fitness in sport and clinical settings. There is a lack of large studies on athletic populations to predict VO<sub>2max</sub> using somatic or submaximal CPET variables. Thus, this study aimed to: (1) derive prediction models for maximal VO<sub>2</sub> (VO<sub>2max</sub>) based on submaximal exercise variables at anaerobic threshold (AT) or respiratory compensation point (RCP) or only somatic and (2) internally validate provided equations. Four thousand four hundred twenty-four male endurance athletes (EA) underwent maximal symptom-limited CPET on a treadmill (n=3330) or cycle ergometer (n=1094). The cohort was randomly divided between: variables selection (n<sub>runners</sub> = 1998; n<sub>cyclist</sub> = 656), model building (n<sub>runners</sub> = 666; n<sub>cyclist</sub> = 219), and validation (n<sub>runners</sub> = 666; n<sub>cyclist</sub> = 219). Random forest was used to select the most significant variables. Models were derived and internally validated with multiple linear regression. Runners were 36.24±8.45 years; BMI = 23.94 ± 2.43 kg·m<sup>-2</sup>; VO<sub>2max</sub>=53.81±6.67 mL·min<sup>-1</sup>·kg<sup>-1</sup>. Cyclists were 37.33±9.13 years; BMI = 24.34 ± 2.63 kg·m<sup>-2</sup>; VO<sub>2max</sub>=51.74±7.99 mL·min<sup>-1</sup>·kg<sup>-1</sup>. VO<sub>2</sub> at AT and RCP were the most contributing variables to exercise equations. Body mass and body fat had the highest impact on the somatic equation. Model performance for VO<sub>2max</sub> based on variables at AT was R<sup>2</sup>=0.81, at RCP was R<sup>2</sup>=0.91, at AT and RCP was R<sup>2</sup>=0.91 and for somatic-only was R<sup>2</sup>=0.43. Derived prediction models were highly accurate and fairly replicable. Formulae allow for precise estimation of VO<sub>2max</sub> based on submaximal exercise performance or somatic variables. Presented models are applicable for sport and clinical settling. They are a valuable supplementary method for fitness practitioners to adjust individualised training recommendations. No external funding was received for this work.
Medical subject headings
- Exercise Test
- Oxygen Consumption