Trending Projects
Calibrated EMG-Informed Neuromusculoskeletal Modelling Toolbox (CEINMS)
Provides an easy to use toolbox, compatible withOpenSim, for the estimation of the human lower
extremity muscle and joint dynamics.
Downloads last week: 135
Total followers: 41
Model of the Scapulothoracic Joint
Provide an OpenSim Joint model that enables a moreaccurate representation of scapula mechanics in
musculoskeletal simulations.
Total followers: 30
Total downloads: 9,214
Neuromusculoskeletal Modeling (NMSM) Pipeline
Facilitate development of personalized models andresearch in treatment design for the biomechanics
community.
Forum posts last week: 4
Muscle-actuated Simulation of Human Running
The purpose of this study was to determine howmuscles contribute to propulsion (i.e., the
fore-aft acceleration) and support (i.e., the
vertical acceleration) of the body mass center
during running.
Downloads last week: 63
Total followers: 40
Total downloads: 24,641
Musculoskeletal model of the emu (Dromaius novaehollandiae)
This project page contains all the relevant dataof our project: Emu Model for Investigating
Locomotor dYnamics (EMILY). The emu is a large
(ratite) running bird from Australia. We have used
this model for predictive gait simulations in
OpenSim/Moco.
New followers: 1
OpenSim
Provide easy-to-use, extensible software formodeling, simulating, controlling, and analyzing
the neuromusculoskeletal system.
Downloads last week: 1,547
Forum posts last week: 26
New download files: 4
Total followers: 310
Total downloads: 734,624
OpenMM Zephyr
OpenMM Zephyr provides a visual application forrunning GPU-accelerated molecular simulations.
Downloads last week: 436
Total downloads: 1,096,293
Surrogate modelling from wearable sensors to estimate gait time series
Lower limb joint angles, joint moments, and muscleforces during gait for 17 healthy volunteers (9F,
28±5 yrs) along with raw IMU and EMG data. This
dataset can be used to build regression-based
machine learning models for the prediction of
intended targ
New followers: 1
Full Body Model for use in Dynamic Simulations of Human Gait
Full body musculoskeletal model withmuscle-actuated lower extremity and
torque-actuated torso/upper extremity for use in
dynamic simulations of human movement.
Total followers: 34
Total downloads: 11,965
Reproducibility in simulation-based prediction of natural knee mechanics
This project aims for understanding the influenceof modelers’ approaches and decisions
(essentially their art) throughout the lifecycle
of modeling and simulation. It will demonstrate
the uncertainty of delivering consistent
simulation predictions when the founding data to
feed into models remain the same. The project site
also aims to be a hub to provide an overview of
resources for modeling & simulation of the knee
joint. Funding is provided by the National
Institute of Biomedical Imaging and
Bioengineering, National Institutes of Health
(Grant No. R01EB024573).
Downloads last week: 118
Total downloads: 22,296
OpenSim Moco
OpenSim Moco solves optimal control problems withmusculoskeletal models defined in OpenSim, using
direct collocation.
Forum posts last week: 5
Matlab-Opensim Interfaces
Provides tools for using different aspects ofOpensim within the Matlab environment, including
command line pipelines as well as accessing the
Opensim API directly. The main functionality
has now been included as part of Opensim 3.0 with
improved functionality (and will become more
obsolete with Opensim 4.0). Please see the
developer wiki for more information. Therefore
this is being kept only as an archive, and users
should see the documentation on interfacing Matlab
with Opensim on the Opensim website
(http://simtk-confluence.stanford.edu:8080/display
/OpenSim/Scripting+with+Matlab). As such the
forums etc will not be monitored.
Total followers: 26
Closed loop simulation of a human-exoskeleton and kinetic and kinematic modeling
This project attempts to tackle some of thechallenges in developing an exoskeleton device
using simulation methods. in this project, the
closed loop simulation of a human exoskeleton is
performed .In this study, a simulation-based
method is presented for the designing and analysis
of the parameters of an exoskeleton and its
wearer’s kinetics and kinematics. Model-based
design software, including OpenSim and Inventor,
and mathematical software, such as MATLAB, are
integrated. This method can assist in the
modification of exoskeleton devices and allow
physiologists, and physical therapists to
generate new solutions for rehabilitation programs
using exoskeletons.
Downloads last week: 48
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