Wesam Al Attar singularity evaluation-infinity: a predictive simulation framework for motor intent collapse in athletes
Wesam Saleh A. Al Attar

TL;DR
The WASe-∞ framework predicts motor intent collapse in athletes by integrating multiple physiological factors into a unified model, validated through simulation.
Contribution
Introduces WASe-∞, a novel simulation framework integrating neuromuscular, cognitive, and coordination factors for predicting motor intent collapse in athletes.
Findings
WASe-∞ achieved strong predictive performance with an AUC of 0.930 in simulated athlete profiles.
Sport-specific differences were observed, with swimming showing the highest mean scores and running the lowest.
Framework robustness was confirmed through sensitivity analysis, maintaining AUC >0.90 with coefficient variations up to ±15%.
Abstract
Sustainable athletic performance requires maintaining motor intent stability under physiological stress. Current injury prediction approaches focus on isolated biomechanical markers rather than integrated physiological system dynamics. To develop and validate through comprehensive simulation the Wesam Al Attar Singularity evaluation-infinity (WASe-∞) framework for predicting motor intent collapse by integrating neuromuscular, cognitive, and coordination factors into a unified risk assessment model with clear pathways for empirical validation. A rigorous simulation-based approach was employed using parameters derived from published biomechanics datasets. The WASe-∞ framework integrates five physiological domains through a weighted convergence equation with coefficients derived through systematic three-stage optimization including comprehensive sensitivity analysis. The foundational…
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Taxonomy
TopicsSports Performance and Training · Traumatic Brain Injury Research · Sports injuries and prevention
