In musculoskeletal modelling, several optimization techniques are used to calculate muscle forces, which strongly influence resultant hip contact forces (HCF). The goal of this study was to calculate muscle forces using four different optimization techniques, i.e., two different static optimization techniques, computed muscle control (CMC) and the physiological inverse approach (PIA). We investigated their subsequent effects on HCFs during gait and sit to stand and found that at the first peak in gait at 15-20% of the gait cycle, CMC calculated the highest HCFs (median 3.9 times peak GRF (pGRF)). When comparing calculated HCFs to experimental HCFs reported in literature, the former were up to 238% larger. Both static optimization techniques...
Static optimization is commonly employed in musculoskeletal modeling to estimate muscle and joint lo...
<p>This study assessed the relative importance of introducing an increasing level of medical image-b...
The ability to predict patient-specific joint contact and muscle forces accurately could improve the...
In musculoskeletal modelling, several optimization techniques are used to calculate muscle forces, w...
The goal of this study was to calculate muscle forces using different optimization techniques and in...
Knowledge of the musculoskeletal loading is essential for the design of orthopaedic implants and sur...
Abnormal hip joint contact forces (HJCF) are considered a primary mechanical contributor to the prog...
BACKGROUND: Assessment of contact forces is essential for a better understanding of mechanical facto...
Inverse dynamics problems are usually solved in the analysis of human gait to obtain reaction forces...
Previous research has demonstrated that the number of degrees of freedom (DOF) modelled at a given j...
In-vivo hip joint contact forces (HJCF) can be estimated using computational neuromusculoskeletal (N...
Musculoskeletal models represent a powerful tool to gain knowledge on the internal forces acting at ...
Patients with hip pathology present alterations in gait which have an effect on joint moments and lo...
Musculoskeletal models represent a powerful tool to gain knowledge on the internal forces acting at ...
At every joint there is a redundant set of muscle activated during movement or loading of the system...
Static optimization is commonly employed in musculoskeletal modeling to estimate muscle and joint lo...
<p>This study assessed the relative importance of introducing an increasing level of medical image-b...
The ability to predict patient-specific joint contact and muscle forces accurately could improve the...
In musculoskeletal modelling, several optimization techniques are used to calculate muscle forces, w...
The goal of this study was to calculate muscle forces using different optimization techniques and in...
Knowledge of the musculoskeletal loading is essential for the design of orthopaedic implants and sur...
Abnormal hip joint contact forces (HJCF) are considered a primary mechanical contributor to the prog...
BACKGROUND: Assessment of contact forces is essential for a better understanding of mechanical facto...
Inverse dynamics problems are usually solved in the analysis of human gait to obtain reaction forces...
Previous research has demonstrated that the number of degrees of freedom (DOF) modelled at a given j...
In-vivo hip joint contact forces (HJCF) can be estimated using computational neuromusculoskeletal (N...
Musculoskeletal models represent a powerful tool to gain knowledge on the internal forces acting at ...
Patients with hip pathology present alterations in gait which have an effect on joint moments and lo...
Musculoskeletal models represent a powerful tool to gain knowledge on the internal forces acting at ...
At every joint there is a redundant set of muscle activated during movement or loading of the system...
Static optimization is commonly employed in musculoskeletal modeling to estimate muscle and joint lo...
<p>This study assessed the relative importance of introducing an increasing level of medical image-b...
The ability to predict patient-specific joint contact and muscle forces accurately could improve the...