This research establishes a computational and rheological framework for mitigating impact trauma in patients with neurodegenerative-induced gait instability. By modeling the human fall as a stochastic control failure characterized by increased neural propagation latency, the paper proposes a theoretical architecture for an autonomous reactive shield utilizing non-Newtonian fluid dynamics. The study integrates Finite Element Analysis (FEA) with nonlinear damping equations to mathematically validate a 45% reduction in peak ground reaction forces. Note: Proprietary geometric dimensions and specific chemical weight percentages have been redacted for pending intellectual property filings.
G Karthik (Thu,) studied this question.