Rover egress, EVA walking, tool handling, load carriage, and habitat task ergonomics under lunar gravity.
Space biomechanics, mission analytics, and human performance engineering
Operational biomechanics for space, field, sport, care, and autonomous missions.
Space biomechanics, mission analytics, and human performance engineering converge to quantify movement, loading, fatigue, and recovery in operational environments. The platform converts synchronized sensor streams into defensible decisions for space, field, sport, care, and autonomous mission workflows.
Space biomechanics page
Moon and Mars mission biomechanics for crew health, mobility, and surface operations.
Medley Research and Technologies supports mission teams with computational models that quantify astronaut movement, suit-constrained mobility, fatigue, balance recovery, exercise countermeasures, and return-to-gravity readiness across lunar and Martian environments.
Muscle loss monitoring, fatigue-aware operations, balance adaptation, and field biomechanics for remote crews.
Integrated measurement stack
One workflow for movement capture, musculoskeletal modeling, and mission decisions.
The platform fuses marker-based motion capture, markerless vision, IMU streams, force plate kinetics, and functional anthropometric models into decision-ready biomechanical outputs.
Kinematic and kinetic intelligence
From raw sensor data to validated biomechanical outputs.
Operational domains
Built for astronauts, defense teams, sports labs, and health care providers.
Build the next lab
Deploy a computational biomechanics platform for research, operations, and care.
Configure your capture stack, simulation models, reporting dashboard, and navigation workflow around your mission environment.
No.28, Eco Wrkz,
SIDCO Industrial Estate,
Ekkatuthangal, Chennai - 600032