International audienceIn-silico models applied to bone remodeling are widely used to investigate bone mechanics, bone diseases, bone-implant interactions, and also the effect of treatments of bone pathologies. This article proposes a new methodology to solve the bone remodeling problem using one-dimensional (1D) elements to discretize trabecular structures more efficiently for 2D and 3D domains. An Euler integration scheme is coupled with the momentum equations to obtain the evolution of material density at each step. For the simulations, the equations were solved by using the finite element method, and two benchmark tests were solved varying mesh parameters. Proximal femur and calcaneus bone were selected as study cases given the vast rese...
Trabecular bone’s capability to adapt its architecture to the surrounding environment has been a sub...
Micro-finite element (FE) analysis is a well established technique for the evaluation of the elastic...
It is still unclear how bones manage to generate and adapt their complex trabecular structures, what...
International audienceIn-silico models applied to bone remodeling are widely used to investigate bon...
Finite-element models are used to estimate numerically the distribution of bone mineral density (BMD...
Abstract. A computational simulation method for trabecular surface remodeling in cancellous bone was...
Abstract. Combined with the finite element method, an optimization algorithm based on strain-energy ...
textabstractThe process of adaptive bone remodeling can be described mathematically and simulated in...
Bone remodeling is a highly complex biological process allowing bone tissue to evolve throughout lif...
The process of adaptive bone remodeling can be described mathematically and simulated in a computer ...
The process of adaptive bone remodeling can be described mathematically and simulated in a computer ...
In this paper a control and optimization procedure for bone remodeling simulations was adopted to st...
We introduce a continuous modeling approach which combines elastic response of the trabecular bone s...
Topology optimization is presently used in most diverse scientific, technologic and industrial areas...
L’os subit perpétuellement des contraintes mécaniques et physiologiques, ainsi sa qualité et sa rési...
Trabecular bone’s capability to adapt its architecture to the surrounding environment has been a sub...
Micro-finite element (FE) analysis is a well established technique for the evaluation of the elastic...
It is still unclear how bones manage to generate and adapt their complex trabecular structures, what...
International audienceIn-silico models applied to bone remodeling are widely used to investigate bon...
Finite-element models are used to estimate numerically the distribution of bone mineral density (BMD...
Abstract. A computational simulation method for trabecular surface remodeling in cancellous bone was...
Abstract. Combined with the finite element method, an optimization algorithm based on strain-energy ...
textabstractThe process of adaptive bone remodeling can be described mathematically and simulated in...
Bone remodeling is a highly complex biological process allowing bone tissue to evolve throughout lif...
The process of adaptive bone remodeling can be described mathematically and simulated in a computer ...
The process of adaptive bone remodeling can be described mathematically and simulated in a computer ...
In this paper a control and optimization procedure for bone remodeling simulations was adopted to st...
We introduce a continuous modeling approach which combines elastic response of the trabecular bone s...
Topology optimization is presently used in most diverse scientific, technologic and industrial areas...
L’os subit perpétuellement des contraintes mécaniques et physiologiques, ainsi sa qualité et sa rési...
Trabecular bone’s capability to adapt its architecture to the surrounding environment has been a sub...
Micro-finite element (FE) analysis is a well established technique for the evaluation of the elastic...
It is still unclear how bones manage to generate and adapt their complex trabecular structures, what...