Real-Time Musculoskeletal Surrogates for Pediatric Cerebral Palsy: a Credibility Pilot
Real-time musculoskeletal (MSK) surrogates could support personalized rehabilitation for children with cerebral palsy (CP), but their credibility depends on subject-wise evaluation, low inference latency, and calibrated uncertainty. We develop a subject-conditioned causal neural surrogate using OpenSim-derived static parameters, temporal joint kinematics, true muscle capacities, and training-only perturbations. On a real pediatric CP gait dataset comprising nine children, we use leave-one-subject-out validation on six development subjects and evaluate a frozen configuration once on three locke
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- PossiblePossibly related (embedding) · 45%A roadmap for end-to-end task-agnostic exoskeleton control →
- LinkedLinked via arxiv author · 85%Mohammad Arif Ul Alam →
“Real-Time Musculoskeletal Surrogates for Pediatric Cerebral Palsy: a Credibility Pilot”
