Left ventricular morphological and functional predictors of V ̇ O 2 peak ${\dot V_{{{\mathrm{O}}_2}{\mathrm{peak}}}}$

Viswanath B Unnithan1, Alexander Beaumont2, Thomas Rowland1

  • 1Sport and Physical Activity Research Institute, Division of Sport, Exercise and Health, School of Health and Life Sciences, University of the West of Scotland, Hamilton, UK.

Experimental Physiology
|September 12, 2025
PubMed

Insights

Training status is the key factor influencing maximal oxygen uptake (VO2peak) in young athletes. Cardiac adaptations also play a role, but their impact is mediated by training intensity and duration.

Area of Science:

  • Cardiovascular Physiology
  • Sports Science
  • Pediatric Exercise Physiology

Background:

  • Cardiovascular adaptations to training are crucial for athletic performance.
  • Understanding the determinants of maximal oxygen uptake (VO2peak) is essential for optimizing training programs.
  • Longitudinal studies are needed to elucidate the interplay between cardiac structure, function, and VO2peak over time.

Purpose of the Study:

  • To identify central determinants of VO2peak in highly trained male youth soccer players (SP) and recreationally active controls (CON).
  • To longitudinally evaluate left ventricular (LV) morphological and functional changes over 3 years in relation to VO2peak.
  • To determine the independent contributions of training status and cardiac adaptations to VO2peak.

Main Methods:

  • Longitudinal study over 3 years with annual assessments.
  • Inclusion of highly trained male youth soccer players (SP) and recreationally active male participants (CON).
  • Cardiac ultrasound to measure LV morphology and function (global, tissue-Doppler, strain) at rest and during exercise; VO2peak assessment.

Main Results:

  • Training status was the sole significant independent predictor of VO2peak when considering LV morphology.
  • Early diastolic filling (E) during maximal exercise significantly predicted VO2peak, independent of training status.
  • Training status consistently emerged as the primary predictor of VO2peak across all models.

Conclusions:

  • Training status is the dominant factor influencing VO2peak in young males.
  • While LV adaptations occur, their influence on VO2peak is primarily mediated by the training stimulus.
  • Growth and maturation do not independently impact VO2peak as much as training status and associated cardiac adaptations.