OpenSim: open-source software to create and analyze dynamic simulations of movement.
about
A real-time system for biomechanical analysis of human movement and muscle functionHip Joint Stresses Due to Cam-Type Femoroacetabular Impingement: A Systematic Review of Finite Element SimulationsReview of Modelling Techniques for In Vivo Muscle Force Estimation in the Lower Extremities during Strength TrainingGait analysis using wearable sensorsPredictive simulation generates human adaptations during loaded and inclined walkingGeneration of the Human Biped Stance by a Neural Controller Able to Compensate Neurological Time DelayInferring muscle functional roles of the ostrich pelvic limb during walking and running using computer optimizationHealthy older adults have insufficient hip range of motion and plantar flexor strength to walk like healthy young adultsPredicted threshold against backward balance loss following a slip in gait.Integration of marker and force data to compute three-dimensional joint moments of the thumb and index finger digits during pinchThe mobilize center: an NIH big data to knowledge center to advance human movement research and improve mobilityThe development of a segment-based musculoskeletal model of the lower limb: introducing FreeBodyValidation of Hill-type muscle models in relation to neuromuscular recruitment and force-velocity properties: predicting patterns of in vivo muscle forceSubject-specific analysis of joint contact mechanics: application to the study of osteoarthritis and surgical planningHumans, geometric similarity and the Froude number: is ''reasonably close'' really close enough?Musculoskeletal simulation can help explain selective muscle degeneration in Duchenne muscular dystrophy.Estimating the Mechanical Behavior of the Knee Joint During Crouch Gait: Implications for Real-Time Motor Control of Robotic Knee Orthoses.Muscle contributions to fore-aft and vertical body mass center accelerations over a range of running speedsMinimally invasive high-speed imaging of sarcomere contractile dynamics in mice and humans.Contributions of muscles and passive dynamics to swing initiation over a range of walking speeds.Stance and swing phase costs in human walking.Muscle contributions to support and progression during single-limb stance in crouch gait.Muscle mass in musculoskeletal models.Muscle contributions to propulsion and support during runningEvaluation of factors affecting tibial bone strain after unicompartmental knee replacementSimulation of normal and pathological gaits using a fusion knowledge strategy.Grand challenge competition to predict in vivo knee loadsMusculoskeletal Modeling of the Lumbar Spine to Explore Functional Interactions between Back Muscle Loads and Intervertebral Disk MultiphysicsModeling and simulating the neuromuscular mechanisms regulating ankle and knee joint stiffness during human locomotion.Subject-specific finite element modeling of the tibiofemoral joint based on CT, magnetic resonance imaging and dynamic stereo-radiography data in vivoMuscle Synergies Facilitate Computational Prediction of Subject-Specific Walking Motions.Integrating dynamic stereo-radiography and surface-based motion data for subject-specific musculoskeletal dynamic modelingMOtoNMS: A MATLAB toolbox to process motion data for neuromusculoskeletal modeling and simulation.Comparison of ACL strain estimated via a data-driven model with in vitro measurements.Multiscale musculoskeletal modelling, data-model fusion and electromyography-informed modelling.Predicting tibiotalar and subtalar joint angles from skin-marker data with dual-fluoroscopy as a reference standard.On identifying kinematic and muscle synergies: a comparison of matrix factorization methods using experimental data from the healthy population.Accuracy of femur reconstruction from sparse geometric data using a statistical shape model.Linking brain, mind and behaviorMuscle contributions to medial tibiofemoral compartment contact loading following ACL reconstruction using semitendinosus and gracilis tendon grafts.
P2860
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P2860
OpenSim: open-source software to create and analyze dynamic simulations of movement.
description
2007 nî lūn-bûn
@nan
2007 թուականի Նոյեմբերին հրատարակուած գիտական յօդուած
@hyw
2007 թվականի նոյեմբերին հրատարակված գիտական հոդված
@hy
2007年の論文
@ja
2007年論文
@yue
2007年論文
@zh-hant
2007年論文
@zh-hk
2007年論文
@zh-mo
2007年論文
@zh-tw
2007年论文
@wuu
name
OpenSim: open-source software to create and analyze dynamic simulations of movement.
@ast
OpenSim: open-source software to create and analyze dynamic simulations of movement.
@en
OpenSim: open-source software to create and analyze dynamic simulations of movement.
@nl
type
label
OpenSim: open-source software to create and analyze dynamic simulations of movement.
@ast
OpenSim: open-source software to create and analyze dynamic simulations of movement.
@en
OpenSim: open-source software to create and analyze dynamic simulations of movement.
@nl
prefLabel
OpenSim: open-source software to create and analyze dynamic simulations of movement.
@ast
OpenSim: open-source software to create and analyze dynamic simulations of movement.
@en
OpenSim: open-source software to create and analyze dynamic simulations of movement.
@nl
P2093
P356
P1476
OpenSim: open-source software to create and analyze dynamic simulations of movement.
@en
P2093
Allison S Arnold
Ayman Habib
Chand T John
Darryl G Thelen
Eran Guendelman
Frank C Anderson
Peter Loan
Scott L Delp
P304
P356
10.1109/TBME.2007.901024
P577
2007-11-01T00:00:00Z