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April 1, 2026Journal of Clinical Medicine0 citationsOpen Access

Postural Balance and Human Movement: An Integrative Framework for Mechanisms, Assessment, and Functional Implications

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EGEduardo Guzmán-MuñozFMFelipe Montalva-ValenzuelaEGExal García-Carrillo

Key Points

  • The aim is to clarify key concepts of postural balance and control, and to synthesize the mechanisms involved.
  • Conducted a narrative literature synthesis to gather evidence on postural balance mechanisms.
  • Organized information on multisensory integration, neural control, and cognitive influences on balance.
  • Summarized assessment approaches and clinical tests used for balance across various populations.
  • Differences between postural control and balance were established and integrated into a framework.
  • Highlighted the role of sensory reweighting and central neural control in balancing.
  • Identified limitations and applications of common balance tests across ages and activities.

Abstract

Postural balance is a foundational component of human motor behavior, yet it remains conceptually ambiguous and methodologically heterogeneous across the clinical, educational, and sport sciences. This narrative review aims to provide an integrative framework that clarifies key concepts (postural control vs. postural balance), synthesizes the main sensorimotor and biomechanical mechanisms underpinning balance, and organizes current assessment approaches and functional implications across populations. Narrative literature synthesis was conducted to integrate evidence covering multisensory integration and sensory reweighting, central neural control (spinal, brainstem, cerebellar, and cortical contributions), neuromuscular and biomechanical strategies (e.g., ankle/hip/stepping), and cognitive influences (e.g., dual-task effects). We further summarize commonly used instrumental outcomes derived from force-platform center-of-pressure metrics and widely adopted clinical and functional balance tests, highlighting their typical applications and limitations across the lifespan including pediatric, general adults, older adults, and athletic populations. This review proposes a closed-loop, systems-based model in which postural balance is conceptualized as an emergent functional outcome arising from distributed postural control processes shaped by task, environmental, and individual constraints. In conclusion, integrating mechanistic understanding with population-specific assessment enhances interpretability and supports more precise, context-sensitive balance evaluation and intervention in both health and performance settings.

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Cite This Study

Guzmán-Muñoz et al. (2026) studied this question.

synapsesocial.com/papers/69ccb76c16edfba7beb895b0https://doi.org/10.3390/jcm15072588
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