Baliston Health is an advanced AI-powered movement analysis platform designed for objective assessment of gait, running, jumping, and neurological parameters. The system utilizes foot motion and loading data, enabling specialists to rapidly identify biomechanical abnormalities, monitor rehabilitation progress, assess injury risk, and optimize athletic performance. The solution consists of AI Mov-Scan sensors and the Bal AI artificial intelligence platform. Mov-Scan sensors capture every detail of movement in real-world conditions, while Bal AI automatically processes the data and provides medically interpreted findings along with individualized recommendations. From biomechanical assessment to clinical decision-making in just a few minutes. The system was developed for professionals who work with human movement on a daily basis. In less than three minutes, it delivers a comprehensive movement analysis without cameras, biomechanics laboratories, or additional preparation. Movement symmetry, foot-ground contact, load distribution, compensatory mechanisms, gait trajectory, fall risk, and numerous other biomechanical parameters are evaluated in real time. The Bal AI analysis platform has been trained using one of the world’s largest biomechanics databases and is supported by the latest clinical literature. The system not only provides data, but also interprets the results, generates recommendations, and answers specialists’ questions through an integrated artificial intelligence environment. Reports can be easily shared with patients, healthcare professionals, or integrated into clinical information systems. Baliston Health is used in rehabilitation, sports medicine, neurology, injury prevention, athlete testing, and performance preparation. The system is registered as a Class II medical device. The platform offers four main analysis modules: Baliston Health enables fast, objective, and practical biomechanical assessment in virtually any environment, transforming complex movement data into clear clinical insights and actionable decisions.
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