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Association between downhill mountain bike racing and neurophysiological indices of sensory, attentional and cognitive processing in youth athletes.

Neill MG, Fletcher EK, Larson E, Emery CA, Smirl JD. · JSAMS plus · 2026

Researchers measured brain electrical responses (N100, P300 and N400 event-related potentials) in 15 youth and young-adult downhill mountain bikers before and after up to five days of elite racing. The N400 response, linked to higher-level cognitive processing, was significantly reduced after riding (by about 1.26 μV), while the sensory and attention-related N100 and P300 measures were unchanged; the authors note it's unclear how much of this comes from head impacts versus fatigue or concentration.
Takeaway: Treat downhill mountain bike racing like other head-impact sports and allow recovery time before tasks needing sharp thinking after race days.
Abstract (source)

Background: There is growing concern over potential neurological impairment associated with accumulation of repetitive head acceleration events (HAE) in sport, particularly during periods of neurological vulnerability, including youth. Despite the high volume of HAEs sustained during downhill mountain biking, it is currently unknown downhill mountain biking is associated with neural function in youth. Thus, the

Purpose: of this study was to investigate the association between exposure to downhill mountain bike racing and sensory, attentional, and cognitive processing in youth using N100, P300 and N400 Event related Potentials (ERPs).

Methods: Fifteen participants (6 female, 9 male; ages 15-24 years) contributed 38 ERP observations at baseline timepoints and following up to 5 days of elite downhill mountain bike competition.

Results: Conditional linear regression models demonstrated that the average marginal difference in N400 amplitude in measures taken post-mountain bike exposure was 1.26 μV (95% CI: -2.16, -0.36; p = 0.006) less than before riding. N400 latency, P300 amplitude and latency, and N100 amplitude and latency were unchanged from baseline by days (range: 1-4) of mountain biking (all p > 0.26).

Conclusion: In agreement with studies in hockey and football, our

results showed that participation in downhill mountain biking is associated with acute cognitive neural processing impairments. The contribution of exercise, focus and HAEs to these impairments is unclear. This study expands the growing evidence of neural processing impairments occurring acutely following sport participation to the understudied sport of downhill mountain biking.

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