Visual3D is the advanced software tool for 3D biomechanics research and data management.
Visual3D is the advanced software tool for 3D biomechanics research and data management.
Visual3D is the leading biomechanical analysis tool for measuring motion and force data, collected by almost any type of 3D motion capture system. It provides the necessary calculations for kinematics and kinetics – including support for instrumented conveyors. It includes the latest mathematical techniques for optimizations, signal processing and filtering, inverse kinematics, complex biomechanical modeling, force and force structures, and more.
Clients include universities, commercial and government researchers studying rehabilitation, neuroscience, engineering, robotics, sports (performance tracking, injury prevention, equipment manufacturing, exercise studies), orthopedics, prosthetics, animal studies, disability assessments and more.
Visual3D eliminates the need for custom software and on-site maintenance. It manages data by creating indexes for querying, includes support for complex mathematical expressions, and provides the implementation of published algorithms and processes.
Visual3D Features
Customized, traditional or standard biomechanical models.
The development of the model is fast, graphical and unrestricted. Visual3D modeling supports global optimization, 6 DOF, conventional gait, custom marker sets, virtual markers, segments, and more. The modeling is done graphically, but allows the input of direct measurements, inverse kinematic settings, inertial properties, adjustments of graphic overlays, and more.
Kinematics, Inverse Dynamics and custom calculations.
In addition to metrics such as joint angles, moments, center of pressure, signal filtering, DFT, center of mass, energies, rotations, volumes, derivatives and more – you can also write your own calculations. Full control of input parameters, Euler angles, rotation order of Cardan angles, coordinate systems and other parameters make Visual3D the most powerful analysis tool for biomechanics available.
- Integrated support for force sensors, force platforms, instrumented ladders and instrumented conveyors.
- EMG and signal processing.
- Export to OpenSim. Applied global optimization and .mot files and.xml produced.- Comprehensive data management of C3D files. Subject markup and template binding enable integrated datasets.
- External indexing allows integrated access to data, subject, and file libraries.
A sample of just a few linked model-based calculations that are available:
COP Path; Soil reaction force data; Helical angle; Joint Acceleration; Joint angle; Joint rotation; Joint force; Joint moment; Joint power; Joint power scalar; Joint velocity; CG position of the segment; Proximal joint of the segment; Distal joint of the segment; Segment velocity; Scalar energy model; Potential energy; Rotating Energy Terms; Rotational scaling of energy; Totoal energy segment; Translational Energy Terms; Translational energy scalar; Linear momentum; Angular Momentum; Residual Segment; COG Model; Angle of progression of the segment; Destination Path; Muscle length; Moment of inertia model; Model Angular Momentum; UD Power; and more.
System Requirements:
CPU: 1.8 GHz dual core processor
RAM: 2 GB
HDD/SSD: 50 GB of free space on main drive
Operating system: Microsoft Windows 8 32-bit, Microsoft Windows 7 32-bit, and Microsoft Windows Vista 32-bit
Resolution: 1024×768
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