What if we could pause time—safely, reversibly, and on command?
The Stasis Program is developing a breakthrough human stasis system for trauma care, organ preservation, spaceflight, and future disease treatment. Inspired by mammalian hibernation and powered by AI, it promises to extend the survival window in extreme conditions—from battlefield trauma to interplanetary missions.
The Science Behind Safe Human Stasis
– Metabolic Suspension: mTOR inhibitors, thyroid suppressors, and hydrogen sulfide mimetics reduce energy demand without freezing.
– Neuroprotection: NRF2 activation and exogenous ketones protect the brain during hypometabolic states.
– Cardiovascular Modulation: Nitric oxide pathways and clot-monitoring maintain circulatory integrity.
– Muscle/Bone Preservation: Urea recycling and neuromuscular stimulation prevent atrophy.
– Safe Rewarming: Nanoparticle-assisted thermal control guided by AI.
AI-Powered Monitoring & Control
– Reinforcement learning (RL) governs dosage, rewarming, and emergency overrides.
– Sensor fusion from NIRS, IR thermography, endovascular temp, and BP telemetry.
– Redundant safety protocols: Passive failovers + AI suspension if drift exceeds 5%.
Hardware-in-the-Loop (HIL) Simulation Bench Now Live
To meet FDA Class III Medical AI standards, our HIL system rigorously tests:
– Real-time latency (≤100 ms decision loops)
– Redundancy failover (≤200 ms)
– Sensor dropout and computational overload scenarios
– Fail-safe response under hardware jitter and power loss
Markets & Revenue Streams
– Critical Care Units: ICU stasis systems
– Organ Banking: Time extension for global transplant viability
– Military: Battlefield trauma survival enhancement
– Spaceflight: Mars and lunar long-duration mission readiness
– Pharma: Licensing of AI platforms + repurposed drug candidates
Global Strategic Partnerships
– Gov & Military: NASA, DARPA, DoD, ESA
– Medical: Johns Hopkins, Cleveland Clinic
– Aerospace: SpaceX, Blue Origin
– Pharma & AI: Pfizer, Novartis, MIT, OpenAI