Kinvent
Kinvent is a pioneer in creating high-quality physiotherapy and sports science equipment, dedicated to advancing technology that benefits practitioners and patients. Their mission is to deliver reliable, cutting-edge tools to enhance performance, accelerate recovery, and improve quality of life, with innovative solutions like biomechanical measurement systems, sensors, and analysis tools. They are also at the forefront of integrating portable force platforms and advanced assessment tools into clinical and sports settings, revolutionizing biomechanical analysis and rehabilitation.
Industries
Nr. of Employees
medium (51-250)
Kinvent
6 rue de Pommessargues, 34000 Montpellier, France
Products
Wireless hybrid IMU + UWB motion sensor
Lightweight wireless sensor that fuses inertial and ultra-wideband data to provide drift-reduced motion tracking and real-time biomechanical metrics (speed, acceleration, power, distance).
Portable multi-axis force plate system
Compact force-plate platform measuring three-axis forces and force-time curves for jump testing, balance assessment and on-field biomechanical analysis.
Lightweight portable force plates for balance and field testing
Compact force plates optimized for static posture and dynamic field-based testing such as countermovement jumps and balance assessments.
Portable dynamometers (hand-held and inline configurations)
Portable devices for isometric and functional strength measurement in clinical and field contexts, including inline configurations validated against electromechanical devices for post-surgical assessment.
Wearable surface EMG sensor
Wearable EMG sensor for recording muscle activation to support neuromuscular assessment, biofeedback and rehabilitation monitoring.
Connected motion-sensor goniometer for ROM assessment
Wearable motion sensor system that measures joint range of motion and posture using standardized, app-guided protocols for clinic and home monitoring.
Wireless hybrid IMU + UWB motion sensor
Lightweight wireless sensor that fuses inertial and ultra-wideband data to provide drift-reduced motion tracking and real-time biomechanical metrics (speed, acceleration, power, distance).
Portable multi-axis force plate system
Compact force-plate platform measuring three-axis forces and force-time curves for jump testing, balance assessment and on-field biomechanical analysis.
Lightweight portable force plates for balance and field testing
Compact force plates optimized for static posture and dynamic field-based testing such as countermovement jumps and balance assessments.
Portable dynamometers (hand-held and inline configurations)
Portable devices for isometric and functional strength measurement in clinical and field contexts, including inline configurations validated against electromechanical devices for post-surgical assessment.
Wearable surface EMG sensor
Wearable EMG sensor for recording muscle activation to support neuromuscular assessment, biofeedback and rehabilitation monitoring.
Connected motion-sensor goniometer for ROM assessment
Wearable motion sensor system that measures joint range of motion and posture using standardized, app-guided protocols for clinic and home monitoring.
Services
Cloud-connected mobile platform providing guided assessments, exercise programs, progress tracking and remote follow-up for clinicians and patients.
Cloud-based connectors and APIs to synchronize sensor data and patient records with practice-management and follow-up software in real time.
Provision of phase-based rehabilitation protocols, patient education materials and remote program delivery workflows for home-based and hybrid care.
Live and recorded webinars, clinical articles and practical guides for clinician training, protocol adoption and continuing education.
On-demand product demonstrations and distributor channels to support procurement and deployment of measurement systems.
Cloud-connected mobile platform providing guided assessments, exercise programs, progress tracking and remote follow-up for clinicians and patients.
Cloud-based connectors and APIs to synchronize sensor data and patient records with practice-management and follow-up software in real time.
Provision of phase-based rehabilitation protocols, patient education materials and remote program delivery workflows for home-based and hybrid care.
Live and recorded webinars, clinical articles and practical guides for clinician training, protocol adoption and continuing education.
On-demand product demonstrations and distributor channels to support procurement and deployment of measurement systems.
Expertise Areas
- Biomechanical measurement and field-deployable force analysis
- Clinical assessment and monitoring (strength, balance, range of motion)
- Wearable sensor development and sensor-fusion (IMU, UWB, sEMG, pressure)
- Tele-rehabilitation and remote patient monitoring
Key Technologies
- Inertial Measurement Units (IMU)
- Ultra-wideband positioning (UWB)
- Portable multi-axis force platforms
- Surface electromyography (sEMG)
News & Updates
A groundbreaking motion analysis system that measures forces in three dimensions, recognized for innovation in biomechanics.
Seamless integration of Kinvent sensors with Hexfit software for real-time monitoring and data-driven decisions.
Using force plates to analyze power, fatigue, and neuromuscular performance.
Effective ways to promote your practice and attract more patients.
The growing role of artificial intelligence in modern healthcare and physiotherapy.
Exploring the relationship between grip strength and shoulder rotator health, and how the K-Grip dynamometer can be used for assessment.
A groundbreaking motion analysis system that measures forces in three dimensions, recognized for innovation in biomechanics.
Seamless integration of Kinvent sensors with Hexfit software for real-time monitoring and data-driven decisions.
Using force plates to analyze power, fatigue, and neuromuscular performance.
Effective ways to promote your practice and attract more patients.
The growing role of artificial intelligence in modern healthcare and physiotherapy.
Exploring the relationship between grip strength and shoulder rotator health, and how the K-Grip dynamometer can be used for assessment.