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Manufacturer provides biofeedback testing and analysis system

NegotiableUpdate on 05/06
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Overview

The manufacturer supplies a biofeedback testing and analysis system, and MotionMonitor from the United States is a one-stop turnkey 3D motion capture and analysis system designed to integrate various hardware, digital video, event markers, and other simulation devices, virtual reality, and tactile devices, while synchronously collecting and analyzing multi-source data in real-time ..

Product Details

Manufacturer provides biofeedback testing and analysis system

Biofeedback testing and analysis system, ,

Motionmonitor from the United StatesTM One stop real-time motion capture and multi-source data synchronization analysis system

A real-time 3D motion capture and analysis system with strong integration capabilities, capable of integrating various capture and analysis hardware for real-time synchronized data analysis, used for clinical, biomechanical, neural control, and sports medicine applications involving complex motion analysis.

MotionMonitor is a one-stop turnkey 3D motion capture and analysis system designed to integrate various hardware, including but not limited to motion trackers EMG()、 Force measurement platform, instrument treadmill, instrument staircase, hand sensor, EEG, quantitative EEG (qEEG) system, digital video, event tagging and other analog devices, virtual reality and tactile devices, while synchronously collecting and analyzing multi-source data in real-time.

The data generated from the rich collection of analysis tools can be immediately replayed through graphical displays of all data outputs. Stunning 3D computer rendered object animations can be viewed as skeletons, simple sketches, or human figures. Integrate and use widely available hardware in the market to achieve real-time measurement of human movement, brain activity, eye movement, muscle recruitment, and external forces acting on the body.
MotionMonitor can integrate and accurately locate the hardware of all mainstream manufacturers in the market for sports, and synchronize data. Ensure that the components you select work together and use computer rendering and graphics display for real-time presentation. The data output includes joint forces and moments, as well as user-defined variables synchronously received from the virtual environment, and all motion and dynamics data, including joint forces and moments calculated using top-down or bottom-up inverse dynamics models. Provide comprehensive, systematic, and high-quality data for your research needs.
The data can be used in an intuitive drop-down menu that does not require programming. Users can write scripts to define additional data and events, and extend inherent functionality together with statistical modules.

With this system, you can integrate various hardware and synchronize real-time action analysis in all aspects:
·Customize comprehensive solutions to ensure you achieve research goals .....
Determine which technology and configuration are suitable for your * needs
·Integrate any motion capture analysis hardware on the market to leverage the advantages of each technology and ensure cost-effectiveness.


Synchronized collection of multiple data sources for human motion, whole body motion capture and analysis system, 3D motion capture system, motion capture data collection system, integration and analysis of multiple data sources for motion capture, muscle modeling system, comprehensive human motion capture analysis system, interconnection and integration of different human motion systems, 3D motion capture system, motion training analysis system

·To avoid the hassle of dealing with multiple suppliers, MotionMonitor's support team can solve hardware and software related issues with just one click calling.
·Convenient and efficient analysis:
The system has a built-in drop-down menu and one click buttons for comprehensive and systematic high-quality data analysis. Users can also customize the interface and create icon driven interfaces for quick and easy setup, collection, and analysis processes. The icon ensures that all operators collect data in a consistent manner, thereby reducing the introduction of errors during the process.

This system is a platform with strong integration capabilities in the motion capture analysis industry, including but not limited to the following brands:

-TrakSTAR location tracker from Ascension, USA
-Polhemus' Fastrak Position Tracker
-Polhemus' Patriot position tracker
-Polhemus' Liberty Position Tracker
-Polhemus G4 Position Tracker
-Haw motion capture camera from Motion Analysis Corp
-Eagle motion capture camera from Motion Analysis Corp
-Motion Analysis Corp's Osprey motion capture camera
-Kestrel motion capture camera from Motion Analysis Corp
-Qualisys' Oqus motion capture camera
-Qualisys' Miqus camera
-VICON's Vero Camera
-VICON's Bonita Camera
-VICON's Vantage camera
-VICON's T-series cameras
-VICON's MX camera
-Optitrak Flex motion capture camera from Natural Point
-Natural Point's OPrime motion capture camera
-PhaseSpace's Impulse and Impulse2 motion capture gloves, cameras, and capture systems
-Visualeyez 3D motion capture system from Phoenix Technologies Incorporated
-Thern Digital's Optotrak 3020 and Certus
-Metria Innovation's MPT Moir é Phase Tracking System
-Xsens Inertial Measurement Unit
-Delsys Inertial Measurement Unit
-APDM Inertial Measurement Unit
-InterSense Inertial Measurement Unit
-Bertec force measuring platform
-AMTI force measuring platform
-Kistler dynamometer
-Bertec Instrument Stairs
-AMTI Instrument Stairs
-Bertec instrument treadmill (providing real-time dynamic control of the treadmill)
-ATI miniature weighing sensor
-AMTI miniature weighing sensor
-Bertec miniature weighing sensor

Why choose this system?
-Gather the strengths of various schools for my use, systematically and comprehensively analyze and integrate data


  • A turnkey 3D motion and motion capture and analysis system, designed to analyze all aspects of various movements and movements


  • ● Gather the strengths of various companies for my use: support and provide a wide range of motion and sports hardware on the market


  • ● Ability to translate your research into your own clinical, teaching, ergonomic, or sports applications


  • A complete set of multi-scale biomechanical research and rehabilitation software


  • ● One stop flexible selection according to needs, meeting various needs for motion and motion capture, monitoring, and analysis


  • ● Provide more comprehensive and systematic motion capture and analysis data (including bones, muscles, blood vessels, nerves, and external stimuli, etc.)


  • A complete one-stop turnkey 3D motion capture and analysis system: integrating the strengths of all mainstream motion and sports hardware in the market, comprehensively and systematically digging, analyzing, and integrating data.


  • ● Support real-time data collection from a wide range of hardware (all mainstream motion and sports hardware on the market).


  • ● Use force gauges, hand sensors EMG、 Eye tracking, video EEG、 Synchronize the collection of motion data through virtual reality, tactile, and simulated data, simplifying the collection and analysis process.


  • Provide real-time playback through graphical display of raw or processed data.


  • No programming work is required from setup to data collection and analysis, operations can be completed through radio buttons and drop-down menus.


  • Provide a universal software platform that spans various hardware systems, taking advantage of the strengths of each company and offering higher cost-effectiveness.


  • ● Wide diversity of functions and capabilities, supporting various applications.


  • The data collection, analysis, and visualization systems on the market can measure all aspects of human motion and movement.

Basic hardware: Motionmonitor can integrate various system devices for capturing hardware and software for synchronously collecting and analyzing multi-source data

Tailored solutions based on your needs to help you determine the appropriate motion monitor system configuration (choose from desktop or various portable laptop configurations)

Support various capture technologies: ensure cost-effectiveness of technology

We assist you in selecting, configuring, and testing optimal kinematic techniques or technology blends and combinations.
Including electromagnetic trackers, Moir é phase trackers, inertial measurement units, unmarked optical cameras, active optical cameras, passive optical capture cameras, passive optical cameras, and so on


Motion capture tracking and analysis system, motion capture biomechanical evaluation and analysis system, human motion biomechanical comprehensive analysis system, human motion data analysis system, multi-source motion data analysis system, electromyography computer integration system, sports medicine analysis system, balance testing and analysis system, strength and conditioning testing and analysis system, motion capture comprehensive collaborative system

Support various peripheral devices: achieve all aspects of human motion capture and analysis

We help you select and integrate peripheral systems to ensure the achievement of your * goals.
Various capture cameras, position trackers EMG()、 Measurement platform, instrument treadmill, instrument staircase, hand sensor, EEG, quantitative EEG (qEEG) system, digital video, event tagging and other analog devices, virtual reality and tactile devices, etc.

One stop turnkey service: Avoiding the hassle of dealing with multiple suppliers, MotionMonitor support team's one click call will solve hardware and software related issues:

We conduct on-site installation and training with the aim of focusing on your specific application and collecting meaningful data.


Human comprehensive motion capture and analysis system, 3D motion capture data acquisition and integration system, neuroscience and motion control analysis system, muscle modeling system, synchronized collection of multiple data sources for human motion, human motion measurement and analysis system, manual therapy motion testing and analysis system, human motion mechanics capture system, all body motion acquisition and analysis system, 3D motion capture system

Typical Application Introduction:

MotionMonitor provides real-time solutions in a wide range of applications involving human motion research. Intended to analyze all aspects of human movement, starting with external stimuli that may affect human movement; Measurement and visualization of simulated brain activity; Then measure and analyze the muscle recruitment required to affect movement; Report standard kinematics and the resulting joint forces. Stimulus is monitored in various formats, from one-dimensional targets to 3D immersive virtuality created in WorldViz and Unity. Visual stimuli are presented on simple flat screens, head mounted displays, stereoscopic projection screens, and Bertec immersive domes. Brain activity is synchronously captured from three different EEG systems, providing the ability to easily identify events and associated movements. All EMG systems have conducted physical measurements of muscle recruitment. In addition, an integrated muscle model with user-defined optimization programs can be used to model individual muscle activities. Reverse kinematics comes from data collected from 10 different motion capture systems and all force measurement platform manufacturers. The breadth of technology used to capture data and the depth of analysis it contains in software.

1. Biomechanics and Life Sciences



Our solution device supports life science research from orthopedics to motor function, sports science, sports training, strength and regulation, and sports medicine. The functions include:

Multiple visualization methods to effectively display the data you need, including text; Bar chart or time series chart; Animation; Or 3D visualization.

Raw and processed data, such as kinematics and dynamics, can be obtained from the drop-down menu without programming. User defined formulas and scripts allow for application specific analysis of gait, balance, reach out, and grip.

Various biomechanical modeling functions, including the ability to customize joint center definitions and local coordinate systems. Support standard methods, such as the recommendations of the International Society of Biomechanics (ISB) and user-defined models. It can track, analyze, and visualize various bones of the hands, feet, and spine.

CT-MRI registration is used to create 3D renderings with specific thematic bone geometries. Anatomical landmarks can be automatically extracted from scans and used to define biomechanical models.

Integrated muscle modeling, using user-defined or imported OpenSim models to visualize and analyze muscle force and torque directly from motion capture data.

Supports multiple motion capture technologies, including cameras, inertial and electromagnetic sensors. Multiple kinematic techniques can be combined into a real-time hybrid motion capture system to simultaneously leverage the advantages of each technique.

2、 Neuroscience and Motor Control

人体运动的多尺度神经力学建模
多尺度神经力学模型

Assist scientists in addressing the functional connections between the nervous system, sensory and musculoskeletal systems, as well as the movement of the body in physics

Human movement originates from the coordinated interaction between the nervous, muscular, and skeletal systems. Despite understanding the potential mechanisms of motor neuromuscular and musculoskeletal functions, there is currently no experimental understanding of the neural mechanical interactions in the composite neuromuscular skeletal system. This is the main challenge in understanding human movement.
To address this issue, MotionMonitor has developed a comprehensive multi-scale modeling platform that includes muscle, bone, and neural models, among others. We combine high-density (HD-EMG) with blind source separation to identify interfering HD-EMG signals into a spike train set of spinal motor neuron discharges that simultaneously control many muscle fibers. We have developed a multi-scale musculoskeletal modeling formula driven by the discharge of motor neurons in the body, which is used to calculate high fidelity estimates of the resulting musculoskeletal forces. This will enhance the analytical ability of how nerve controlled muscle tissue interacts with bone tissue, thus opening up new avenues for understanding the etiology, diagnosis, and treatment of neuromuscular/orthopedic diseases.


Human motion data analysis and processing system, whole body motion capture tracking and analysis system, all motion capture systems, Bertec force plate synchronous data acquisition and analysis system, biomechanical motion analysis system, motion capture tracking and analysis system, 3-D motion capture system, various motion testing and analysis devices, motion capture synchronous data acquisition and analysis system, whole body motion capture and analysis system



The research in neuroscience and motion control benefits from various hardware and analyses integrated into our program.

Use any Tobii head mounted eye tracking system to capture real-time 3D eye tracking data synchronized with other data. Analyze the intersection of lines of sight.

Capture EEG data using Biosemi or AntNeuro hardware. Suitable for sitting, standing, and active tasks. Create user-defined points of interest in EEG data based on other kinematic data.

Real time presentation of visual, auditory, and tactile cues. User defined visual cues can be presented in various ways using simple geometric shapes, bar charts, time series charts, or application specific visual effects such as traffic lights.

Extend visual feedback to virtual reality through bidirectional communication between monitor r, Unity, and World Viz. 3D visualization can be presented in various ways. Some examples include:

Hand Laboratory: A 3D screen and truss system designed specifically for upper limb research. Provide the ability for the subject to interact with 3D virtual objects presented on or in front of the screen.

Immersive display: a complete hardware and software solution that uses a half mirror screen for research when the visualization of the arm is hidden or disturbed.

Integrated Research Environment System (IRES): A research quality environment created in collaboration with Bertec. Equipped with an immersive VR dome with 3D motion capture system and instrument treadmill.

3、 Rehabilitation and ergonomics:



Our solution device can assist trainers, exercise trainers, and ergonomics experts in evaluating, screening, and retraining:

Real time information provides the ability to evaluate performance and provide immediate feedback to staff or patients.

Synchronized peripheral data, such as EMG and force gauges, allow for research beyond kinematics on other factors that may cause motion.

A user-defined, icon driven interface provides customization for your protocol to ensure reliable and simple data collection and analysis.

Real time biofeedback and virtual reality display data in multiple ways, extending evaluation to training and behavior change.

Raw, processed, or user-defined data allows for evaluating the effectiveness of rehabilitation techniques or workplace environments. Custom reports can be generated immediately to share this data with clinical doctors, risk managers, and others.

During the data collection process, real objects such as tools or tea cups can be tracked, animated, and analyzed to monitor the interaction between workers or patients and the surrounding environment.

Customized turnkey solutions, including portable systems that utilize various motion capture technologies, allowing for data collection in any environment.
4、 Sports biomechanics


Our solution device provides the ability to monitor athletes and improve performance through many * functions, including:

Use advanced motion tracking technology to track, animate, and analyze athletes' movements and moving objects, such as golf, hitting, pitching, tennis, bowling, cycling, etc.

Perform sports specific analysis for evaluation, screening, and return to the field.

Access and visualize data through various methods, including report summaries, bar and time series charts, custom animations, and tracking.

Use audio feedback to provide real-time feedback for training and performance enhancement. Using virtual reality to extend real-time feedback and create an immersive experience for athletes.

Use our motion monitor special purpose application to simplify data collection and analysis for specific or motion related movements, such as:

Sports Monitor Jump Edition: An ideal tool for PT, AT, and coaches to quickly evaluate biomechanical and neuromuscular performance using reverse movements, squats, or dives.

Baseball Sports Monitor: A research quality motion capture solution with a simplified process for tracking and analyzing player pitching and hitting movements.

For more detailed configuration plans, please consult the product consultant: Manager Li

Our company has 10 years of experience in providing biomedical engineering research services such as cell tissue material biomechanics and bioprinting,

3D motion captureAlso known as 3D motion tracking or 3D motion tracking, it is a technology used to accurately measure the motion of moving objects in 3D space. It is based on the principles of computer graphics, which records the motion of a moving object with tracking devices in the form of an image through several video capture devices arranged in space. Then, the computer processes the image data to obtain the spatial coordinates (x, y, z) of different points of the object on different time measurement units. Motion Capture (Mocap) in film production and gaming refers more to matching movements. When it comes to facial, hand, or capturing subtle expressions, it is often referred to as performance capture. Motion capture systems are mainly applied in military, entertainment, sports, medical fields, and can also be used for computer vision verification and robotics technology. In film production and video game development, this technology can record the actions of actors and create digital character models into 2D or 3D computer animations.

In the 1970s and 1980s, 3D motion capture began to be used as a photographic image analysis tool in biomechanical research. With the increasing maturity of the technology, it began to expand into fields such as education, training, sports, computer animation, television, film, and video games. The user is equipped with markers at each joint, which recognize actions through changes in position and angle between the markers. At present, motion capture systems include mechanical links, magnetic sensors, optical sensors, acoustic sensors, and inertial sensors. Each technology has its own advantages, but regardless of the technology, users will be subject to certain limitations.

Mechanical type

It is a relatively ancient tracking method that uses a linkage device. It is a system that is relatively cheap, has a high degree of accuracy, and has a short response time. It can measure the entire body movement of an object without delay, and is not affected by external interference such as sound, light, electromagnetic waves, etc. Additionally, it can be combined with a force feedback device. The disadvantage is that it is relatively bulky, inflexible, and has inertia. Due to the limitations of mechanical connections, the workspace is also restricted to a certain extent, and there is a central area in the workspace that cannot be accessed, commonly known as the mechanical system blind spot, which prevents mechanical equipment from entering.

Electromagnetic type

Utilize the strength of the magnetic field for position and orientation tracking. Generally includes transmitter, receiver, interface, and computer. The advantage is that there is no obstruction problem, and other objects are allowed between the receiver and transmitter, allowing users to move around. Compared to other motion capture devices, it has a lower price, moderate accuracy, high sampling rate (up to 120 times/second), and a large working range (up to 60m2), allowing multiple magnetic trackers to track the entire body motion and increasing the range of tracking motion. The disadvantage is that it is susceptible to interference from electronic devices and ferromagnetic materials, which may cause magnetic field deformation and errors. When the measurement distance increases, the error increases, the time delay increases (33ms), and there is a small jitter.

Optical type

Use optical perception to determine the real-time position and orientation of objects. Based on triangulation. Optical devices mainly include photosensitive devices (receivers), light sources (transmitters), and controllers for signal processing. There are various types of photosensitive devices, such as ordinary cameras, photodiodes, etc. The light source can be ambient light or structured light. To prevent interference from visible light, infrared, laser, and other light sources are usually used. Due to the fast propagation speed of light, optical devices have significant advantages such as fast speed, high update rate, and low latency, making them more suitable for real-time applications. They work well in a small range, but their disadvantage is that they are expensive.

Inertial type

By blindly inferring the position of the tracked object, that is to say, * through the internal calculation of the motion system. The advantages are no emission source, no fear of obstruction, no external interference, and infinite workspace. The disadvantage is the rapid accumulation of errors.

Motion Analysis is a high-performance computer manufacturer based on optical motion capture systems, providing users with 3D optical motion capture systems. The system is capable of motion capture, six degrees of freedom measurement, micro motion measurement, and 3D platform motion measurement. The Raptor series has overcome technical difficulties and become a system that can be used indoors, outdoors, and under direct sunlight conditions. The real-time function allows users to observe subtle movements of the target at the same time. *The functionality, simple installation, convenient operation, and precise measurement of Motion Analysis's digital capture lens make it a standard configuration for motion capture. The system has an accuracy of up to 0.1mm, and is wireless, does not emit light, does not generate heat, has no radiation, is pressure resistant, wear-resistant, and has a Chinese/English operating interface. The mature Motion Analysis digital image capture and analysis system has provided * solutions for nearly a thousand users, covering a wide range of fields such as motion analysis, animation production, and industrial measurement and control.





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Manufacturer provides biofeedback testing and analysis system