As the interaction between tissue adaptation and the mechanical condition within tissues is complex, mathematical models are desired to study this interrelation. In this study, a mathematical model is presented to investigate the interplay between collagen architecture and mechanical loading conditions in the arterial wall. It is assumed that the collagen fibres align along preferred directions, situated in between the principal stretch directions. The predicted fibre directions represent symmetrically arranged helices and agree qualitatively with morphometric data from literature. At the luminal side of the arterial wall, the fibres are oriented more circumferentially than at the outer side. The discrete transition of the fibre orientation...
Constitutive relations are fundamental to the solution of problems in continuum mechanics, and are r...
Mechanical loading protocols in tissue engineering (TE) aim to improve the deposition of a properly ...
Mechanical loading protocols in tissue engineering (TE) aim to improve the deposition of a properly ...
As the interaction between tissue adaptation and the mechanical condition within tissues is complex,...
As the interaction between tissue adaptation and the mechanical condition within tissues is complex,...
As the interaction between tissue adaptation and the mechanical condition within tissues is complex,...
Background Cardiovascular system is directly affected by mechanical loads such as blood pr...
Understanding collagen fiber remodeling is desired to optimize the mechanical conditioning protocols...
Understanding collagen fiber remodeling is desired to optimize the mechanical conditioning protocols...
Understanding collagen fiber remodeling is desired to optimize the mechanical conditioning protocols...
Understanding collagen fiber remodeling is desired to optimize the mechanical conditioning protocols...
Understanding collagen fiber remodeling is desired to optimize the mechanical conditioning protocols...
Understanding collagen fiber remodeling is desired to optimize the mechanical conditioning protocols...
Mechanical loading protocols in tissue engineering (TE) aim to improve the deposition of a properly ...
Mechanical loading protocols in tissue engineering (TE) aim to improve the deposition of a properly ...
Constitutive relations are fundamental to the solution of problems in continuum mechanics, and are r...
Mechanical loading protocols in tissue engineering (TE) aim to improve the deposition of a properly ...
Mechanical loading protocols in tissue engineering (TE) aim to improve the deposition of a properly ...
As the interaction between tissue adaptation and the mechanical condition within tissues is complex,...
As the interaction between tissue adaptation and the mechanical condition within tissues is complex,...
As the interaction between tissue adaptation and the mechanical condition within tissues is complex,...
Background Cardiovascular system is directly affected by mechanical loads such as blood pr...
Understanding collagen fiber remodeling is desired to optimize the mechanical conditioning protocols...
Understanding collagen fiber remodeling is desired to optimize the mechanical conditioning protocols...
Understanding collagen fiber remodeling is desired to optimize the mechanical conditioning protocols...
Understanding collagen fiber remodeling is desired to optimize the mechanical conditioning protocols...
Understanding collagen fiber remodeling is desired to optimize the mechanical conditioning protocols...
Understanding collagen fiber remodeling is desired to optimize the mechanical conditioning protocols...
Mechanical loading protocols in tissue engineering (TE) aim to improve the deposition of a properly ...
Mechanical loading protocols in tissue engineering (TE) aim to improve the deposition of a properly ...
Constitutive relations are fundamental to the solution of problems in continuum mechanics, and are r...
Mechanical loading protocols in tissue engineering (TE) aim to improve the deposition of a properly ...
Mechanical loading protocols in tissue engineering (TE) aim to improve the deposition of a properly ...