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March 7, 2026SHILAP Revista de lepidopterología0 citationsOpen Access

Neuromuscular control strategies underpinning motor expertise in yoga: a biomechanical analysis of twisting poses in expert and novice practitioners

LHLijun HuaCLChunlin LuoGBGengchao Bi

Key Points

  • This study aims to explore how neuromuscular control and motor expertise influence complex yoga movements in practitioners with varying skill levels.
  • Compared expert and novice female yoga practitioners (17 each) during twisting poses.
  • Utilized musculoskeletal modeling and surface electromyography (sEMG) for analysis.
  • Examined internal coordination under varying mechanical demands of two poses: Standing Twist (ST) and Semi-Triangle Twist (STT).
  • The Semi-Triangle Twist (STT) posed higher mechanical demands with greater trunk rotation and peak moments.
  • Experts showed higher rectus abdominis activation compared to novices, indicating more effective core stabilization.
  • The Standing Twist (ST) demonstrated a higher lumbar co-activation ratio in experts, highlighting an efficient muscular coordination.

Abstract

Background This study investigates the neuromuscular control strategies and motor expertise underlying complex yoga movements by comparing expert ( n = 17) and novice ( n = 17) female practitioners during two twisting poses: the Standing Twist (ST) and the Semi-Triangle Twist (STT). Methods Utilizing musculoskeletal modeling and surface electromyography (sEMG), we examined how internal coordination adapts to varying task demands. Results While the STT imposed significantly higher mechanical demands—evidenced by greater peak trunk rotation ( p 0.001), higher peak moments ( p = 0.020), and increased erector spinae activation—the external kinematic performance did not distinguish experts from novices. Crucially, expertise was manifested at the neuromuscular level: experts exhibited a refined recruitment pattern characterized by higher rectus abdominis activation compared to novices (unadjusted p 0.05), suggesting a more targeted core stabilization strategy. Furthermore, the lower-load ST pose induced a significantly higher lumbar co-activation ratio ( p = 0.015), indicating that muscular coordination efficiency is non-linearly related to task difficulty. Conclusion These findings suggest that motor expertise in yoga is not defined by observable movement outcomes, but by the optimization of internal motor representations and the strategic recruitment of musculature to manage spinal stability.

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Cite This Study

Hua et al. (2026) studied this question.

synapsesocial.com/papers/69abc0b85af8044f7a4e95e9https://doi.org/10.3389/fpsyg.2026.1715999
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