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The effects of intensive mindfulness interventions on athletes’ psychological states and cognitive performance: an fNIRS study

Yunting Song, Jiaxiu Zhang, Shukurjon Gaziev, Jasur Zarifbayev, Rashid Matkarimov, Pin Zhong, Yuanze Cheng, Mingqiang Xiang

BMC Psychology March 9, 2026 DOI: 10.1186/s40359-026-04323-w (opens in new tab) via OpenAlex

Summary

AI-generated from the abstract

A 10-day intensive mindfulness training for elite badminton athletes increased self-reported mindfulness but did not significantly improve accuracy or reaction time on the Tower of London executive task compared to an active control group. Under low cognitive load, the mindfulness group showed a lower hemodynamic response in the right ventrolateral prefrontal cortex (vlPFC) and a higher neural efficiency index in that region. The vlPFC response was positively associated with reaction time. The absence of robust behavioral changes suggests caution in interpreting the neural findings.

Study at a glance

Characteristics Randomized controlled trial Peer reviewed
Sample size 28
Population Elite badminton athletes
Intervention Mindfulness training
Duration 10-day intervention
Topics Meditation
Keywords Cognition Psychological intervention Task project management Randomized controlled trial
Key finding Short-term intensive mindfulness training did not significantly improve executive task accuracy or reaction time but was associated with reduced hemodynamic response and increased neural efficiency in the right vlPFC under low cognitive load.

Abstract

This randomized controlled trial examined whether short-term intensive mindfulness training is associated with changes in executive task performance and prefrontal hemodynamic responses in elite athletes. Twenty-eight elite badminton athletes were randomly assigned to a 10-day mindfulness intervention or an active control (regular training plus neutral video viewing). Before and after the intervention, athletes completed the Tower of London (TOL) task while prefrontal responses were recorded using fNIRS; task accuracy (ACC) and reaction time (RT) were assessed. Neural responses were quantified using Hbdiff (HbO–HbR) and a neural efficiency (NE) index, and mindfulness was assessed with the Five-Facet Mindfulness Questionnaire (FFMQ). The intervention group showed increased FFMQ scores, but no significant Group × Time interaction was observed for TOL-related ACC or RT. Under low cognitive load, CH15 (right vlPFC) showed a lower hemodynamic response, and the CH15 NE index showed a higher NE index than the control group; the CH15 (right vlPFC) response was positively associated with RT. These findings add to evidence on mindfulness-related modulation of vlPFC (CH15) responses under low cognitive load during executive task performance, although the absence of robust behavioral changes warrants cautious interpretation.

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