Combines dynamic motion capture and static posture evaluation in a single system for complete biomechanical insight.
Provides in-depth pedaling mechanics, power symmetry, joint coordination, and aerodynamic posture optimization for cyclists.
Detects even minor postural deviations and asymmetries to support injury prevention and long-term musculoskeletal health.
Instantly transforms complex data into easy-to-understand 3D models, performance dashboards, and automated reports.
STT 2DMA helps cyclists maximize efficiency by analyzing pedaling mechanics, posture, joint movement, and power symmetry. It identifies biomechanical imbalances, improves riding position, reduces injury risk, and enhances overall performance through data-driven adjustments that translate directly into increased speed, endurance, and long-term cycling comfort.
In clinical settings, STT 2DMA supports accurate assessment of posture, gait, balance, and functional movement. Therapists use objective data to design personalized rehabilitation programs, track recovery progress, prevent reinjury, and restore proper movement patterns, helping patients achieve faster recovery and improved quality of life.
STT 2DMA enables coaches and sports scientists to analyze movement efficiency, strength, agility, and coordination across multiple sports. By identifying faulty mechanics and muscular imbalances, it reduces injury risk, enhances athletic performance, and supports the development of safer, more effective training programs for athletes at all levels.
Central hub enabling seamless synchronization, control, and data acquisition for Trigno wireless sensors.
A dynamic camera for a changing a world valkyrie is the new foundation of your motion capture system.
High-performance motion capture cameras delivering precision, speed, and flexibility across research and engineering applications.
Biomechanical modeling software delivering intuitive musculoskeletal analysis and objective, quantitative human movement insights.
Force Plates are high-precision biomechanical measurement systems designed to accurately capture ground reaction forces, moments, and center of pressure (CoP) during human movement.