International audienceInverse dynamics methods are commonly used for the biomechanical analysis of human motion. External forces applied on the subject are required as an input data to solve the dynamic equilibrium of the subject. Force platforms measure ground reactions forces and moments (GRF&Ms) but they limit the ecological aspect of experimental conditions. Motion-based GRF&Ms prediction may circumvent this limitation. The current study aims at evaluating the accuracy of an optimization-based GRF&Ms prediction method modified to be applied to the interaction with a MNHS. The main improvement of the method deals with the contact detection in such a moving and/or non-horizontal frame. To evaluate the accuracy of the method, 20 subjects p...
International audienceA motion-based method to predict ground reaction forces and moments (GRF&M) in...
International audienceA motion-based method to predict ground reaction forces and moments (GRF&M) in...
International audienceA motion-based method to predict ground reaction forces and moments (GRF&M) in...
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...
International audienceA motion-based method to predict ground reaction forces and moments (GRF&M) in...
International audienceA motion-based method to predict ground reaction forces and moments (GRF&M) in...
International audienceA motion-based method to predict ground reaction forces and moments (GRF&M) in...
International audienceA motion-based method to predict ground reaction forces and moments (GRF&M) in...
International audienceA motion-based method to predict ground reaction forces and moments (GRF&M) in...
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...
International audienceA motion-based method to predict ground reaction forces and moments (GRF&M) in...
International audienceA motion-based method to predict ground reaction forces and moments (GRF&M) in...
International audienceA motion-based method to predict ground reaction forces and moments (GRF&M) in...
International audienceA motion-based method to predict ground reaction forces and moments (GRF&M) in...
International audienceA motion-based method to predict ground reaction forces and moments (GRF&M) in...