Reliable computational foot models offer an alternative means to enhance knowledge on the biomechanics of human foot. Model validation is one of the most critical aspects of the entire foot modeling and analysis process. This paper presents an in vivo experiment combining motion capture system and plantar pressure measure platform to validate a three-dimensional finite element model of human foot. The Magnetic Resonance Imaging (MRI) slices for the foot modeling and the experimental data for validation were both collected from the same volunteer subject. The validated components included the comparison of static model predictions of plantar force, plantar pressure and foot surface deformation during six loading conditions, to equivalent mea...
The purpose of this study is to demonstrate a new MRI compatible loading device capable of reconstru...
International audienceThis work aims at developing a patient-specific Finite Element (FE) model of t...
Information on the internal stresses/strains in the human foot and the pressure distribution at the ...
Reliable computational foot models offer an alternative means to enhance knowledge on the biomechani...
Reliable computational foot models offer an alternative means to enhance knowledge on the biomechani...
Thesis (Ph.D.)--University of Washington, 2015Finite element (FE) foot modeling is a useful tool for...
The objective of this study was to develop and validatea subject-specific framework for modelling th...
The objective of this study was to develop and validatea subject-specific framework for modelling th...
Nowadays, footwear serves an essential role in improving athletic performance and decreasing the ris...
Mechanical properties of the foot are responsible for its normal function and play a role in various...
Mechanical properties of the foot are responsible for its normal function and play a role in various...
The objective of this study is to develop a computational framework for investigating the dynamic be...
This is the final version of the article. Available from Springer Verlag via the DOI in this record....
A biomechanical model of the human foot emphasizing the plantar soft tissue was developed. The groun...
A biomechanical model of the human foot emphasizing the plantar soft tissue was developed. The groun...
The purpose of this study is to demonstrate a new MRI compatible loading device capable of reconstru...
International audienceThis work aims at developing a patient-specific Finite Element (FE) model of t...
Information on the internal stresses/strains in the human foot and the pressure distribution at the ...
Reliable computational foot models offer an alternative means to enhance knowledge on the biomechani...
Reliable computational foot models offer an alternative means to enhance knowledge on the biomechani...
Thesis (Ph.D.)--University of Washington, 2015Finite element (FE) foot modeling is a useful tool for...
The objective of this study was to develop and validatea subject-specific framework for modelling th...
The objective of this study was to develop and validatea subject-specific framework for modelling th...
Nowadays, footwear serves an essential role in improving athletic performance and decreasing the ris...
Mechanical properties of the foot are responsible for its normal function and play a role in various...
Mechanical properties of the foot are responsible for its normal function and play a role in various...
The objective of this study is to develop a computational framework for investigating the dynamic be...
This is the final version of the article. Available from Springer Verlag via the DOI in this record....
A biomechanical model of the human foot emphasizing the plantar soft tissue was developed. The groun...
A biomechanical model of the human foot emphasizing the plantar soft tissue was developed. The groun...
The purpose of this study is to demonstrate a new MRI compatible loading device capable of reconstru...
International audienceThis work aims at developing a patient-specific Finite Element (FE) model of t...
Information on the internal stresses/strains in the human foot and the pressure distribution at the ...