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February 28, 2026Brain Sciences2 citationsOpen Access

The Effect of Music Stimulation on Resting-State Brain Functional Networks Following Exhaustive Endurance Exercise: An EEG Study

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JFJing FanBLBoyang LiFLFujie Liu

Key Points

  • This research aims to investigate the impact of motivational music on brain functional connectivity patterns following intense endurance exercise in male athletes.
  • 34 healthy male athletes performed incremental cycling exercises to exhaustion with and without music.
  • Resting-state EEG was recorded before and after exercises to analyze brain networks.
  • Brain functional networks were assessed in theta, alpha, and beta frequency bands using phase locking value (PLV) and graph theory methods.
  • Music significantly prolonged time to exhaustion during cycling exercises.
  • Increased global and local efficiency in brain networks was observed with music compared to no music.
  • Without music, beta-band connectivity saw significant increases, suggesting compensatory responses to fatigue.
  • Music reduced alpha and beta connectivity post-exercise while enhancing specific network connections.

Abstract

Objective: The purpose of this research is to examine how motivational music immediately impacts the brain’s functional connectivity patterns in male athletes following a single session of intense endurance exercise, utilizing resting-state electroencephalography (EEG) and brain network analysis methods. Methods: The study involved 34 healthy male athletes who were tasked with performing incremental cycling exercises until exhaustion, both with and without music. Their resting-state EEG was recorded before and after the exercise. Brain functional networks were analyzed in the theta, alpha, and beta frequency bands based on changes in phase locking value (PLV). Specifically, the study examined the central executive network (CEN), default mode network (DMN), salience network (SN), sensorimotor network (SMN), and dorsal attention network (DAN), assessing their topological properties using graph theory methods. Results: Music significantly prolonged the time to exhaustion. Across frequency bands, the music condition exhibited higher global and local efficiency compared with the no-music condition. Following exhaustion without music, beta-band connectivity significantly increased, suggesting compensatory hyper-synchronization under fatigue. In contrast, music led to reduced alpha- and beta-band global connectivity post-exercise, accompanied by selective strengthening of functionally relevant couplings, particularly between SMN and CEN, and enhanced DAN–DMN coordination. Additionally, music prevented maladaptive connectivity shifts observed under fatigue, including excessive SN–CEN coupling. Conclusions: Exhaustive exercise without music induces widespread beta-band hyper-connectivity, reflecting increased neural cost under central fatigue. Music, however, promotes a more efficient and selectively integrated network configuration, supporting the neural efficiency hypothesis. These findings provide neurophysiological evidence that music optimizes large-scale brain network organization under physical stress, thereby contributing to enhanced endurance performance.

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Cite This Study

Fan et al. (2026) studied this question.

synapsesocial.com/papers/69a287570a974eb0d3c03086https://doi.org/10.3390/brainsci16030258
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