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Synapse
October 20, 20250 citationsOpen Access

The Neural Basis of Groove Sensations: Implications for Music-Based Interventions and Dance Therapy in Parkinson's Disease

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CTChon‐Haw TsaiCLChia‐Wei Li

Key Points

  • Findings suggest low-frequency groove enhances sensorimotor engagement, impacting movement in response to music.
  • Region-of-interest analysis in fMRI identified increased neural activation in key brain areas during groove perception.
  • Mirror neuron system involvement indicates a neural basis for the urge to move with rhythmic music.
  • Enhanced rhythmic auditory stimulation may offer new therapeutic pathways for improving gait in Parkinson's disease.

Abstract

Groove sensations arise from rhythmic structures that evoke an urge to move in response to music. While syncopation has been extensively studied in groove perception, the neural mechanisms underlying low-frequency groove remain underexplored. This fMRI study examines the role of the mirror neuron system and associated brain regions in processing low-frequency groove. Region-of-interest analysis revealed that amplifying drum and bass components in K-pop songs significantly increased activity in the right posterior inferior frontal gyrus, right inferior/superior parietal lobules, left dorsolateral prefrontal cortex, and bilateral posterior middle/inferior temporal gyrus. These findings suggest that low-frequency grooves engage sensorimotor, executive, and rhythm semantics networks, reinforcing their role in action-related processing. Building on these insights, we propose an enhanced rhythmic auditory stimulation paradigm for Parkinson's disease, incorporating amplified low-frequency rhythmic cues to improve gait synchronization.

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Cite This Study

Tsai et al. (2025) studied this question.

synapsesocial.com/papers/68f5fcce8d54a28a75cf1a58https://doi.org/10.48550/arxiv.2503.02500
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Neural dynamics of predictive timing and motor engagement in music listening2024 · 54 citations
  2. 2Musical groove listening does not enhance primary motor cortex activation2026
  3. 3Musical groove listening does not enhance primary motor cortex activation2025
  4. 4Optimizing Gait Outcomes in Parkinson’s Disease: The Effects of Musical Groove and Familiarity2025 · 5 citations
  5. 5Social interaction enhances the pleasurable urge to move to music in people with Parkinson's disease2026