Item does not contain fulltextInverse dynamics based simulations on musculoskeletal models is a commonly used method for the analysis of human movement. Due to inaccuracies in the kinematic and force plate data, and a mismatch between the model and the subject, the equations of motion are violated when solving the inverse dynamics problem. As a result, dynamic inconsistency will exist and lead to residual forces and moments. In this study, we present and evaluate a computational method to perform inverse dynamics-based simulations without force plates, which both improves the dynamic consistency as well as removes the models dependency on measured external forces. Using the equations of motion and a scaled musculoskeletal model, the ground ...
International audienceInverse dynamics methods are commonly used for the biomechanical analysis of h...
International audienceInverse dynamics methods are commonly used for the biomechanical analysis of h...
Inertial Motion Capture (IMC) systems enable in situ studies of human motion free of the severe cons...
Inverse dynamics based simulations on musculoskeletal models is a commonly used method for the analy...
Inverse dynamics based simulations on musculoskeletal models is a commonly used method for the analy...
Inverse dynamics based simulations on musculoskeletal models is a commonly used method for the analy...
When performing inverse dynamic analysis (IDA) of musculoskeletal models to study human motion, inac...
International audienceInverse dynamics methods are commonly used for the biomechanical analysis of h...
International audienceInverse dynamics methods are commonly used for the biomechanical analysis of h...
International audienceInverse dynamics methods are commonly used for the biomechanical analysis of h...
International audienceInverse dynamics methods are commonly used for the biomechanical analysis of h...
International audienceInverse dynamics methods are commonly used for the biomechanical analysis of h...
International audienceInverse dynamics methods are commonly used for the biomechanical analysis of h...
International audienceInverse dynamics methods are commonly used for the biomechanical analysis of h...
International audienceInverse dynamics methods are commonly used for the biomechanical analysis of h...
International audienceInverse dynamics methods are commonly used for the biomechanical analysis of h...
International audienceInverse dynamics methods are commonly used for the biomechanical analysis of h...
Inertial Motion Capture (IMC) systems enable in situ studies of human motion free of the severe cons...
Inverse dynamics based simulations on musculoskeletal models is a commonly used method for the analy...
Inverse dynamics based simulations on musculoskeletal models is a commonly used method for the analy...
Inverse dynamics based simulations on musculoskeletal models is a commonly used method for the analy...
When performing inverse dynamic analysis (IDA) of musculoskeletal models to study human motion, inac...
International audienceInverse dynamics methods are commonly used for the biomechanical analysis of h...
International audienceInverse dynamics methods are commonly used for the biomechanical analysis of h...
International audienceInverse dynamics methods are commonly used for the biomechanical analysis of h...
International audienceInverse dynamics methods are commonly used for the biomechanical analysis of h...
International audienceInverse dynamics methods are commonly used for the biomechanical analysis of h...
International audienceInverse dynamics methods are commonly used for the biomechanical analysis of h...
International audienceInverse dynamics methods are commonly used for the biomechanical analysis of h...
International audienceInverse dynamics methods are commonly used for the biomechanical analysis of h...
International audienceInverse dynamics methods are commonly used for the biomechanical analysis of h...
International audienceInverse dynamics methods are commonly used for the biomechanical analysis of h...
Inertial Motion Capture (IMC) systems enable in situ studies of human motion free of the severe cons...