AI Article Synopsis

  • Recent brain studies indicate that athletes in contact sports experience measurable cognitive and sensory impairments due to cumulative subconcussive impacts throughout the season.
  • This study compares a high-contact group to a low-contact control group and includes both male and female high school athletes, using 231 brain scans over a year.
  • Results show that while both genders exhibit similar subconcussive impairments, female athletes respond more significantly overall, indicating the importance of monitoring these changes to improve health outcomes related to repetitive head impacts.

Article Abstract

Emerging evidence from neurophysiological brain vital sign studies show repeatable sensitivity to cumulative subconcussive impairments over a season of contact sports. The current study addressed the need for research comparing a low-contact control group to high-contact group. Importantly, the study also expanded the scope of neurophysiological changes related to repetitive head impacts to include female athletes in addition to male athletes. In total, 89 high school student athletes underwent 231 brain vital sign scans over a full calendar year. The results replicated prior subconcussive cognitive impairments (N400 delays) and sensory impairments (N100 amplitude reductions) in male athletes and demonstrated similar subconcussive impairments for the first time in female athletes. While there was no significant subconcussive difference between female and male athletes, female athletes show overall larger responses in general. The findings demonstrated that subconcussive impairments are detectable in a controlled experimental comparison for both female and male high school athletes. The study highlights the opportunity to monitor subconcussive changes in cognitive processing for both female and male athletes to help advance prevention, mitigation and management efforts aimed at reducing athletes' risk of potential long-term negative health outcomes related to cumulative exposure to repetitive head impacts.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11582815PMC
http://dx.doi.org/10.1038/s41598-024-80262-zDOI Listing

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