HomeMars Mission Medical AutonomyXeno-Patient Stabilization Bay

Xeno-Patient Stabilization Bay

Interactive 3D containment-bay simulator: balance heater power, nutrient infusion and chamber pressure against a lumped heat-balance and Michaelis-Menten metabolic model to keep a newly captured organism's vitals inside the survivable band.

Mars Mission Medical Autonomy3DModerate60 FPS
space-biology-clinic ↗ Open standalone

A newly captured organism sits in a 3D containment pod driven by a lumped thermal-balance model (the same Q = m·Cp·ΔT relation used for triage in the source article), a Michaelis–Menten nutrient-uptake curve and a Gaussian thermal-performance factor. Dial in heater power, nutrient infusion and chamber pressure to hold the creature's core temperature near its optimum and its metabolic rate in a healthy range — tissue stress climbs whenever any vital drifts outside the safe band and relaxes only once all three sit inside it together, while occasional hull micro-fractures jolt the ambient chill and test how fast you can recover.

⚙ Under the hood

Balance heater power, nutrient infusion and chamber pressure in a 3D containment pod, using a lumped heat-balance and Michaelis-Menten metabolic model to keep a newly captured organism's core temperature and metabolism inside its survivable band.

space biologylife supportthermodynamicsmetabolismtriagecontainment

3D · Three.js / WebGL renderer · 60 FPS target · runs fully client-side, no install

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