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Review | Open Access

Does longer-muscle length resistance training cause greater longitudinal growth in humans? A systematic review

Milo WolfaPatroklos Androulakis KorakakisaMichael D. RobertsbDaniel L. PlotkinbMartino V. FranchicBret ContrerasdMenno HenselmanseStian LarsenfBrad J. Schoenfelda( )
Department of Exercise Science and Recreation, Applied Muscle Development Laboratory, CUNY Lehman College, Bronx, NY, USA
School of Kinesiology, Auburn University, Auburn, AL, USA
Department of Biomedical Sciences, University of Padua, Padua, Italy
BC Strength, San Diego, CA, USA
Navarrabiomed, Complejo Hospitalario de Navarra (CHN), Universidad Pública de Navarra (UPNA), Pamplona, Spain
Department of Sport Sciences and Physical Education, Nord University, Levanger, Norway

Peer review under the responsibility of Editorial Board of Sports Medicine and Health Science

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Abstract

Background

This paper aimed to systematically review the literature regarding the effects of resistance training (RT) performed at longer-muscle length (LML) versus shorter-muscle length (SML) on proxy measurements for longitudinal hypertrophy.

Methods

We included studies that satisfied the following criteria: (1) be a resistance training intervention with a comparison of LML vs SML-RT; (2) assess both fascicle length (FL) and muscle size pre- and post-intervention; (3) involve healthy adults aged ≥ 18 years; (4) be published in an English-language journal, and; (5) have a minimum training intervention duration of 4 weeks. Three databases were searched in February 2024 (Google Scholar, PubMed/Medline, Scopus) for relevant articles, alongside 'forward' and 'backward' citation searching of articles included and additions via authors' personal knowledge. The results of studies were described narratively, compared, and contrasted. Eight studies met the inclusion criteria, totaling a sample size of 120.

Results

Our results suggest that both muscle size and fascicle length increases may be greater following LML-RT versus SML-RT, suggesting LML-RT may lead to greater longitudinal hypertrophy than SML-RT. Notably, evidence is largely mixed; no studies to date have attempted to estimate serial sarcomere number changes from LML versus SML-RT, and all but one study used linear extrapolation methods to estimate FL, which has questionable validity. Therefore, the structural adaptations underlying hypertrophy from LML-RT remain undetermined.

Conclusion

In conclusion, results suggest that LML-RT may be superior to SML-RT for inducing muscle hypertrophy and, more specifically, longitudinal growth, though evidence is mixed.

References

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Sports Medicine and Health Science
Pages 34-42

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Cite this article:
Wolf M, Korakakis PA, Roberts MD, et al. Does longer-muscle length resistance training cause greater longitudinal growth in humans? A systematic review. Sports Medicine and Health Science, 2026, 8(1): 34-42. https://doi.org/10.1016/j.smhs.2025.03.001

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Received: 01 August 2024
Revised: 22 February 2025
Accepted: 03 March 2025
Published: 06 March 2025
© 2025 Chengdu Sport University.

This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).