AI Article Synopsis

  • Sports-related concussions (SRC) in teen athletes can lead to a higher chance of lower leg injuries, and neuromuscular training (NMT) may help reduce these injuries, but the neural changes from NMT in athletes with a history of SRC are not well known.
  • A study involved 32 adolescent female athletes, comparing those with a history of SRC to those without, to look at changes in their movement and brain activity after a six-week NMT program using 3D motion analysis and fMRI.
  • Findings showed that after NMT, there was a notable decrease in knee movement patterns and changes in brain activity, suggesting that NMT can lead to different neural responses in managing knee movements, especially for athletes with

Article Abstract

Sports-related concussion (SRC) in adolescent athletes is associated with an increased risk of subsequent lower extremity injury. Neuromuscular training (NMT) has shown promise for reducing lower extremity injuries following SRC, however, neural adaptations in response to changes in lower extremity biomechanics following NMT in athletes with a history of SRC (HxSRC) remains poorly understood. Therefore, the purpose of this study was to identify changes in neural activity associated with lower extremity movement adaptations following a six-week NMT intervention in athletes with a HxSRC. Thirty-two right-hand/foot-dominant female adolescent athletes (16 with self-reported HxSRC, 16 age- and anthropometrically-matched controls) completed a bilateral leg press task with 3D motion analysis during functional magnetic resonance imaging (fMRI). Movement adaptations were defined as a change in frontal and sagittal plane range of motion (ROM) during the fMRI bilateral leg press task. Significant pre- to post-NMT reductions were observed in the non-dominant (left) mean frontal plane ROM. Whole-brain neural correlate analysis revealed that increased cerebellar activity was significantly associated with reduced mean left-knee frontal ROM for matched controls. Exploratory within group analyses identified neural correlates in the postcentral gyrus for the HxSRC group which was associated with reduced mean left-knee frontal plane ROM. These distinct longitudinal changes provide preliminary evidence of differential neural activity associated with NMT to support knee frontal plane control in athletes with and without a HxSRC.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11457832PMC
http://dx.doi.org/10.1016/j.neuroscience.2024.08.014DOI Listing

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