Menu

HomeHow it worksContact UsContact Us

Comparative and dose-response effects of supplementary exercise training on VO<sub>2</sub>max in trained athletes: a Systematic Review and Bayesian network meta-analysis.

Li D, Zhou F, Li X, Shibo K, Wang J, Feng X et al. ยท Frontiers in physiology ยท 2026

Researchers pooled 61 randomized trials to compare 11 types of extra training added on top of athletes' normal sport-specific training, ranking which ones best raise VO2max. Five modalities beat the control condition โ€” blood flow restriction training, HIIT, intermittent hypoxic training, sprint interval training, and small-sided games โ€” with HIIT and SIT showing the most consistent support; age, starting fitness, and program length didn't clearly change the results, and the overall certainty of evidence was low to very low.
Takeaway: Add HIIT or sprint intervals to your regular sport training if your goal is a higher VO2max, while keeping expectations modest given the weak evidence quality.
Abstract (source)

Background: Maximal oxygen uptake (VO 2 max) is a critical determinant of endurance performance in athletes, yet the comparative effectiveness and dose-response profiles of different supplementary exercise training modalities remain incompletely characterized. This systematic review and Bayesian network meta-analysis aimed to compare 11 exercise training modalities for improving VO 2 max in healthy athletes, examine dose-response relationships, explore effect modification by sport type, and evaluate study-level moderators using network meta-regression.

Methods: Four databases were searched for randomized controlled trials. Bayesian network meta-analysis (NMA), Bayesian network meta-regression, and dose-response NMA were conducted. Confidence in the evidence was assessed using the Confidence in Network Meta-Analysis framework.

Results: Sixty-one studies were included in the systematic review; 60 contributed to the main NMA and 31 to the dose-response NMA. Five exercise modalities were significantly superior to the active control condition, which consisted of maintaining regular sport-specific training without additional supplementary intervention: blood flow restriction training, high-intensity interval training (HIIT), intermittent hypoxic training, sprint interval training (SIT), and small-sided games (SSG). HIIT and SIT showed the most consistent overall support, although sparse subgroup

Findings: remained exploratory. The dose-response analysis suggested that the modelled significant regions extended across the observed supplementary exercise dose ranges for HIIT, SIT, and SSG. Bayesian network meta-regression showed no clear effect modification by age, baseline VO 2 max, or intervention duration.

Conclusions: Given the predominantly low to very low certainty of evidence, the

findings should be interpreted cautiously. HIIT and SIT appeared to be the most consistently supported supplementary modalities for improving VO 2 max in trained athletes, but these model-based

findings should be interpreted cautiously. HIIT and SIT appeared to be the most consistently supported supplementary modalities for improving VO 2 max in trained athletes, but these model-based findings require confirmation in larger, higher-quality head-to-head trials with common active control groups and standardized VO 2 max methodology. Systematic review registration https://www.crd.york.ac.uk/PROSPERO/view/CRD420261360986, identifier CRD420261360986.

Network meta-analysisEndurance & Cardiovascular
Read the original โ†’