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Influence of Resistance Training Proximity-to-Failure on Skeletal Muscle Hypertrophy: A Systematic Review with Meta-analysis.

Publication ,  Journal Article
Refalo, MC; Helms, ER; Trexler, ET; Hamilton, DL; Fyfe, JJ
Published in: Sports medicine (Auckland, N.Z.)
March 2023

This systematic review with meta-analysis investigated the influence of resistance training proximity-to-failure on muscle hypertrophy.Literature searches in the PubMed, SCOPUS and SPORTDiscus databases identified a total of 15 studies that measured muscle hypertrophy (in healthy adults of any age and resistance training experience) and compared resistance training performed to: (A) momentary muscular failure versus non-failure; (B) set failure (defined as anything other than momentary muscular failure) versus non-failure; or (C) different velocity loss thresholds.There was a trivial advantage for resistance training performed to set failure versus non-failure for muscle hypertrophy in studies applying any definition of set failure [effect size=0.19 (95% confidence interval 0.00, 0.37), p=0.045], with no moderating effect of volume load (p=0.884) or relative load (p=0.525). Given the variability in set failure definitions applied across studies, sub-group analyses were conducted and found no advantage for either resistance training performed to momentary muscular failure versus non-failure for muscle hypertrophy [effect size=0.12 (95% confidence interval -0.13, 0.37), p=0.343], or for resistance training performed to high (>25%) versus moderate (20-25%) velocity loss thresholds [effect size=0.08 (95% confidence interval -0.16, 0.32), p=0.529].Overall, our main findings suggest that (i) there is no evidence to support that resistance training performed to momentary muscular failure is superior to non-failure resistance training for muscle hypertrophy and (ii) higher velocity loss thresholds, and theoretically closer proximities-to-failure do not always elicit greater muscle hypertrophy. As such, these results provide evidence for a potential non-linear relationship between proximity-to-failure and muscle hypertrophy.

Duke Scholars

Published In

Sports medicine (Auckland, N.Z.)

DOI

EISSN

1179-2035

ISSN

0112-1642

Publication Date

March 2023

Volume

53

Issue

3

Start / End Page

649 / 665

Related Subject Headings

  • Sport Sciences
  • Resistance Training
  • Muscle, Skeletal
  • Muscle Strength
  • Hypertrophy
  • Humans
  • 4207 Sports science and exercise
  • 4201 Allied health and rehabilitation science
  • 1302 Curriculum and Pedagogy
  • 1106 Human Movement and Sports Sciences
 

Citation

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ICMJE
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Refalo, M. C., Helms, E. R., Trexler, E. T., Hamilton, D. L., & Fyfe, J. J. (2023). Influence of Resistance Training Proximity-to-Failure on Skeletal Muscle Hypertrophy: A Systematic Review with Meta-analysis. Sports Medicine (Auckland, N.Z.), 53(3), 649–665. https://doi.org/10.1007/s40279-022-01784-y
Refalo, Martin C., Eric R. Helms, Eric T. Trexler, D Lee Hamilton, and Jackson J. Fyfe. “Influence of Resistance Training Proximity-to-Failure on Skeletal Muscle Hypertrophy: A Systematic Review with Meta-analysis.Sports Medicine (Auckland, N.Z.) 53, no. 3 (March 2023): 649–65. https://doi.org/10.1007/s40279-022-01784-y.
Refalo MC, Helms ER, Trexler ET, Hamilton DL, Fyfe JJ. Influence of Resistance Training Proximity-to-Failure on Skeletal Muscle Hypertrophy: A Systematic Review with Meta-analysis. Sports medicine (Auckland, NZ). 2023 Mar;53(3):649–65.
Refalo, Martin C., et al. “Influence of Resistance Training Proximity-to-Failure on Skeletal Muscle Hypertrophy: A Systematic Review with Meta-analysis.Sports Medicine (Auckland, N.Z.), vol. 53, no. 3, Mar. 2023, pp. 649–65. Epmc, doi:10.1007/s40279-022-01784-y.
Refalo MC, Helms ER, Trexler ET, Hamilton DL, Fyfe JJ. Influence of Resistance Training Proximity-to-Failure on Skeletal Muscle Hypertrophy: A Systematic Review with Meta-analysis. Sports medicine (Auckland, NZ). 2023 Mar;53(3):649–665.
Journal cover image

Published In

Sports medicine (Auckland, N.Z.)

DOI

EISSN

1179-2035

ISSN

0112-1642

Publication Date

March 2023

Volume

53

Issue

3

Start / End Page

649 / 665

Related Subject Headings

  • Sport Sciences
  • Resistance Training
  • Muscle, Skeletal
  • Muscle Strength
  • Hypertrophy
  • Humans
  • 4207 Sports science and exercise
  • 4201 Allied health and rehabilitation science
  • 1302 Curriculum and Pedagogy
  • 1106 Human Movement and Sports Sciences