MotionAnalytics
The Future of Biomechanical AI
Startup Pre-Funding Business Software Est. 2024
Total Raised
$150K
Pre-Funding
Last Round
$150K
1 rounds
Team
3
1-10 employees
Confidence
80/100
News
14
articles
Patents
1
About
MotionAnalytics is advancing biomechanical AI by applying over 20 years of biomechanics research from Ben-Gurion University. Its proprietary LBM (Large Biomechanics Models) technology offers a 10x improvement in movement analysis precision, providing real-time insights and biomechanical simulation-based generative AI. LBM powers MotionAnalytics' flagship product, VTrainer, an AI-driven tool that automates video analysis for online coaches, offering real-time feedback on form, injury prevention alerts, and personalized biomechanics-based training. The company’s initial module, SwiMe, serves swim coaches and demonstrates LBM's versatility in analyzing challenging movements. VTrainer aims to expand into broader fitness markets, supporting coaches and fitness professionals in the $54 billion digital fitness industry. With a SaaS subscription model for B2B users, MotionAnalytics plans to grow by offering LBM as a Platform-as-a-Service for various sectors, including sports tech, healthcare, and security, promoting real-time movement analysis and performance optimization across industries.
Classification
Sector
Business SoftwareIT, R&D & Data SolutionsData Analysis & Decision Support
Core Technology
Platforms & InterfacesMobileAPIWebSensingMotionBiometricsArtificial IntelligenceMachine LearningDeep LearningImage RecognitionGenerative AIComputer VisionSimulation & Imaging
Target Customer
Enterprise & Professional ServicesService ProvidersEnterprisesSoftware DevelopmentDefense, Safety & SecuritySecurityHomeland SecuritySafetyConsumersRecreational & LifestyleFitness & SportsHealthcare & Life SciencesHealthcarePatientsProvidersInsurance CompaniesFinancial ServicesFinancial ProductsInsuranceMedia & EntertainmentSportsGaming IndustryGovernment & City
Business Model
B2B
Tags
athletesremote-sensingcloud-platformemotions-analyticstrainingsportscomputer-visionsports-techartificial-intelligencemachine-learningbiosensorsearly-detectioncontent-recommendationcloud-basedbiometricsanalysis-softwaremachine-visionrecommendationsweb-applicationidentity-verificationpreventionsaasmotion-trackingfall-preventionpredictive-analyticspersonalizationmotion-detectionsimulationmobile-applicationshuman-machine-interface
News (14)
Jan 1, 2024 · cris.bgu.ac.il
Not applicable
Metabolic power response to added mass on the lower extremities during running
Not applicable
Jan 1, 2024 · cris.bgu.ac.il
Not applicable
Joint kinematic and kinetic responses to added mass on the lower extremities during running
Not applicable
Sep 13, 2023 · journals.plos.org
N/A
Emotion and motion: Toward emotion recognition based on standing and walking
N/A
Aug 4, 2022 · journals.plos.org
N/A
Parametric equations to study and predict lower-limb joint kinematics and kinetics during human walking and slow running on slopes
N/A
May 1, 2022 · cris.bgu.ac.il
Neutral
Effect of using real motion versus predicted motion as input for digital human modeling of back and shoulder loads during manual material handling
None
Jan 1, 2022 · cris.bgu.ac.il
Not applicable
Enhancing motion tracking accuracy of a low-cost 3D video sensor using a biomechanical model, sensor fusion, and deep learning
Not applicable
Aug 1, 2020 · cris.bgu.ac.il
Not applicable
Mechanics of walking and running up and downhill: A joint-level perspective to guide design of lower-limb exoskeletons
Not applicable
Jul 1, 2019 · cris.bgu.ac.il
growth-positive
Passive Knee Assistance Affects Whole-Body Biomechanics during Sit-to-Stand
N/A
Jan 1, 2019 · cris.bgu.ac.il
N/A
Preferred walking speed on rough terrain: Is it all about energetics?
N/A
Jan 1, 2017 · cris.bgu.ac.il
Neutral
Spinal moments during continuous sequential lifting, carrying, and lowering
May 3, 2015 · www.sciencedirect.com
N/A
Age-related differences in pelvic and trunk motion and gait adaptability at different walking speeds
N/A
Dec 1, 2011 · cris.bgu.ac.il
Not applicable
The effect of plantar flexor muscle fatigue on postural control
Not applicable
Not applicable
Improving Net Joint Torque Calculations Through a Two-Step Optimization Method for Estimating Body Segment Parameters
Not applicable
Jan 11, 2008 · www.sciencedirect.com
Not applicable
Improving joint torque calculations: Optimization-based inverse dynamics to reduce the effect of motion errors
Not applicable
Details
Product Stage
Beta
Employees
1-10
Exact Count
7
Founded
2024
Locations
Merkaz Ba'alei Melaha, Tel Aviv-Yafo, Israel
Links
Admin
Last Update
Nov 12, 2024
Verified by
Matan Eblagon
Claimed
Yes
Missing
sector, funding rounds, markets, external profiles, not claimed
Team (3)
Adi Nathan
Founder & CEO
Founder
Raziel Riemer
Founder & CTO
Founder
Tzachi Levy
CPO