Musculoskeletal loading influences the stresses and strains within the human femur and thereby affects the processes of bone modeling and remodeling. It is essential for implant design and simulations of bone modeling processes to identify locally high or low strain values which may lead to bone resorption and thereby affect the clinical outcome. Using a finite element model the stresses and strains of a femur with all thigh muscle and joint contact forces were calculated for four phases of a gait cycle. Reduced load sets with only a few major muscles were analyzed alternatively. In a completely balanced femur with all thigh muscles the stress and strain patterns are characterized by combined bending and torsion throughout the bone. Similar...
Due to remodeling of bone architecture, an optimal structure is created that minimizes bone mass and...
Due to remodeling of bone architecture, an optimal structure is created that minimizes bone mass and...
Due to remodeling of bone architecture, an optimal structure is created that minimizes bone mass and...
The aim of the current work was to study the effect of simplified loading on strain distribution wit...
The aim of the current work was to study the effect of simplified loading on strain distribution wit...
Finite element analysis has been used extensively in the study of bone loading and implant performan...
Using finite element analyses, the authors investigated which muscle groups acting around the hip-jo...
Using finite element analyses, we investigated which muscle groups acting around the hip-joint most ...
Using finite element analyses, the authors investigated which muscle groups acting around the hip-jo...
Using finite element analyses, the authors investigated which muscle groups acting around the hip-jo...
Using finite element analyses, the authors investigated which muscle groups acting around the hip-jo...
Recently, coupled musculoskeletal-finite element modelling approaches have emerged as a way to inves...
Using finite element analyses, the authors investigated which muscle groups acting around the hip-jo...
The aim of this study was to analyse the influence of muscle action and a horizontally constrained f...
INTRODUCTION Mechanical strain resulting from muscle forces in locomotion plays an important role in...
Due to remodeling of bone architecture, an optimal structure is created that minimizes bone mass and...
Due to remodeling of bone architecture, an optimal structure is created that minimizes bone mass and...
Due to remodeling of bone architecture, an optimal structure is created that minimizes bone mass and...
The aim of the current work was to study the effect of simplified loading on strain distribution wit...
The aim of the current work was to study the effect of simplified loading on strain distribution wit...
Finite element analysis has been used extensively in the study of bone loading and implant performan...
Using finite element analyses, the authors investigated which muscle groups acting around the hip-jo...
Using finite element analyses, we investigated which muscle groups acting around the hip-joint most ...
Using finite element analyses, the authors investigated which muscle groups acting around the hip-jo...
Using finite element analyses, the authors investigated which muscle groups acting around the hip-jo...
Using finite element analyses, the authors investigated which muscle groups acting around the hip-jo...
Recently, coupled musculoskeletal-finite element modelling approaches have emerged as a way to inves...
Using finite element analyses, the authors investigated which muscle groups acting around the hip-jo...
The aim of this study was to analyse the influence of muscle action and a horizontally constrained f...
INTRODUCTION Mechanical strain resulting from muscle forces in locomotion plays an important role in...
Due to remodeling of bone architecture, an optimal structure is created that minimizes bone mass and...
Due to remodeling of bone architecture, an optimal structure is created that minimizes bone mass and...
Due to remodeling of bone architecture, an optimal structure is created that minimizes bone mass and...