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Visual3D
With Visual3D, you can accurately analyze 3D movements using your own data, analysis techniques, marker sets, and data capture systems. | Sift
Tailored for users handling large biomechanical datasets, Sift is your solution for seamless data analysis with no exporting necessary. Load multiple CMZ libraries simultaneously, simplify data management, and effortlessly handle complex databases. |
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Data SourcesRead in pose estimation data from 3D markerless motion capture systems including Fujitsu, KinaTrax, and Theia. Automatic integration with all major mocap vendors and custom model building for any marker set. Complete support for C3D file format, and now can save as HDF5 file format. Integrate force platforms into your analysis for inverse dynamics and other kinetic analyses. Bring EMG data into your motion capture analysis to offer a richer picture of how a movement happens. Visual3D reads in and builds 3D models from select vendors. See our technology integration partners for a full list of sensor modalities and file formats that we support. | Explore
Generate queries automatically based on signals present in your library, or custom make them:
Explore queried data with a range of plot types including: Connect your time series and metrics back to the underlying movement by animating files or opening the reference video. |
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Fully Custom Pose EstimationVisual3D offers automatic model-building for 3D markerless and IMU systems. Visual3D implements 6DOF (segment optimization) for pose estimation. Visual3D implements Inverse Kinematics (global optimization) for pose estimation. | Quality AssuranceRemove unwanted phase variance by registering signals on internal events or landmarks. Mark signals and metrics for exclusion from your analysis, without deleting them. Run automated anomaly detection routines to easily exclude data or flag trials for a closer look. |
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File ManagementVisual3D supports processing multiple subjects in the same movement trial. Allows multiple static calibration trials to be used for applying to movement trials. Handles each subject separately for computing means, normal data, metrics, etc. when working with the CMZ Library. Process different types of subjects (eg. BATTER, PITCHER) differently by leveraging subject tagging in your pipeline. | AnalysisPrincipal Component Analysis (PCA) Find the dominant modes of variation within your data, using PCA, for dimensionality reduction. Statistical Parametric Mapping (SPM) Run statistical testing across an entire waveform using SPM. Supports one- or two- sample t-tests and ANVOVA tests. Identify outliers or most-similar traces with Dynamic Time Warping. Use signal-based distances to triage where you look first. |
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Caltester
Find the accurate position, orientation, and corners of a force plate. Integrates with instrumented treadmills and force structures. | Batch ProcessingCodify analyses so that the same steps can be applied to every batch you work with. Harmonize processing across projects, across labs, and across time. Directory Watchers and Time-based triggers Have Sift watch directories of interest and immediately process motion capture data as it appears, or, run the same analysis at the same time, every day. |
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PipelineUse Visual3D’s analysis pipelines to automate your workflows and to harmonize analyses across projects, across labs, and across time.
| Sift is designed to integrate seamlessly with Visual3D. Where Visual3D is primarily a session-based tool for processing motion capture data, Sift lets researchers take their Visual3D results and process them at study-level. Users can leverage the power of the Visual3D engine by running pipeline commands on loaded CMZ libraries directly through Sift's interface. At its heart, Sift is all about helping researchers through the knowledge discovery process: collecting, cleaning, shaping, and analysing their data before communicating their results. |
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| To learn more how Visual3D works, visit Visual3D! | To learn more of Sift, visit Sift! |
Learn more about HAS-Motion at the company website. Plus check out our blog for overviews of new features and discussions of the biomechanical literature.


