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Review | Open Access

Neuromotor function following lower-limb muscle or tendon injury: Systematic review and meta-analysis

Jack Andringa-Batea( )Moath AlmusallamaMolly CoventrybMyles C. Murphyb,cEbonie Rioa,d,eTania Pizzaria( )
La Trobe Sport and Exercise Medicine Research Centre, La Trobe University, Melbourne, VIC, Australia
Nutrition and Health Innovation Research Institute, School of Medical and Health Sciences, Edith Cowan University, Joondalup, WA, Australia
Institute for Health Research, The University of Notre Dame, Fremantle, WA, Australia
The Australian Ballet, Melbourne, Victoria, Australia
The Victorian Institute of Sport, Melbourne, Victoria, Australia

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

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Abstract

Purpose

Alterations in neuromotor function occur following lower-limb injuries and might be a factor in recurrent injury. We evaluated if adults with previous lower-limb muscle or tendon injury demonstrate differences in neuromotor function compared with uninjured or control limbs.

Methods

A systematic search of health databases MEDLINE, EMBASE, CINAHL, and SPORTDiscus was conducted from inception until the end of April 2024. Studies evaluating neuromotor function of adults with a history of lower-limb muscle or tendon injury compared to an uninjured contralateral or control limb were included. Inverse variance, random effects meta-analyses were used to generate effect estimates for neuromotor outcomes. A best evidence synthesis determined the level of evidence (LOE) and summary estimates for changes in neuromotor function.

Results

Sixty-three studies (1 796 participants) were included, with injuries to Achilles, gluteal and patella tendons and adductor, calf, hamstring and rectus femoris muscles. Below one quarter (21%) of 232 neuromotor outcomes identified were amenable to data pooling. Evidence for changes in neuromotor function were found, notably, a reduction in lateral hamstring activation during isokinetic contractions (LOE: strong) and knee joint position sense (2 studies: control SMD ​= ​1.11, 95% CI = [0.61, 1.61]; p ​< ​0.000 1; 2 studies: uninjured SMD ​= ​0.98, 95% CI = [0.37, 1.58]; p ​= ​0.002; LOE: strong) in hamstring strain injury.

Conclusions

Differences in neuromotor function were present in injured compared to control and uninjured limbs, including reduced muscle activation and proprioception in hamstring muscle injury. Methodological diversity was common, however, and variable results were found. As such, the overall impact of lower-limb muscle or tendon injury on neuromotor function remains uncertain.

References

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Sports Medicine and Health Science
Pages 390-406

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Cite this article:
Andringa-Bate J, Almusallam M, Coventry M, et al. Neuromotor function following lower-limb muscle or tendon injury: Systematic review and meta-analysis. Sports Medicine and Health Science, 2026, 8(4): 390-406. https://doi.org/10.1016/j.smhs.2025.07.012

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Received: 14 April 2025
Revised: 20 June 2025
Accepted: 31 July 2025
Published: 06 August 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/).