During secondary fracture healing, various tissue types including new bone are formed. The local mechanical strains play an important role in tissue proliferation and differentiation. To further our mechanobiological understanding of fracture healing, a precise assessment of local strains is mandatory. Until now, static analyses using Finite Elements (FE) have assumed homogenous material properties. With the recent quantification of both the spatial tissue patterns (Vetter et al., 2010) and the development of elastic modulus of newly formed bone during healing (Manjubala et al., 2009 ), it is now possible to incorporate this heterogeneity. Therefore, the aim of this study is to investigate the effect of this heterogeneity on the strain patt...
Computational models are employed as tools to investigate possible mechano-regulation pathways for t...
Comparative anatomy and experimental studies suggest that the mass and distribution of tissue within...
Fracture repair is a complex process involving many different cellular processes that must be coordi...
During secondary fracture healing, various tissue types including new bone are formed. The local mec...
Iterative computational models have been used to investigate the regulation of bone fracture healing...
During secondary bone healing, different tissue types are formed within the fracture callus dependin...
Several mechanoregulation algorithms proposed to control tissue differentiation during bone healing ...
Most long-bone fractures heal through indirect or secondary fracture healing, a complex process in w...
Bone is a heterogeneous material and its mechanical properties vary within the body. Variations in t...
The fracture healing process is modulated by the mechanical environment created by imposed loads and...
Fracture repair has previously been shown to be sensitive to mechanical environment, yet the specifi...
After bone fracture, various cellular activities lead to the formation of different tissue types, wh...
After bone fracture, various cellular activities lead to the formation of different tissue types, wh...
Computational models are employed as tools to investigate possible mechano-regulation pathways for t...
Comparative anatomy and experimental studies suggest that the mass and distribution of tissue within...
Fracture repair is a complex process involving many different cellular processes that must be coordi...
During secondary fracture healing, various tissue types including new bone are formed. The local mec...
Iterative computational models have been used to investigate the regulation of bone fracture healing...
During secondary bone healing, different tissue types are formed within the fracture callus dependin...
Several mechanoregulation algorithms proposed to control tissue differentiation during bone healing ...
Most long-bone fractures heal through indirect or secondary fracture healing, a complex process in w...
Bone is a heterogeneous material and its mechanical properties vary within the body. Variations in t...
The fracture healing process is modulated by the mechanical environment created by imposed loads and...
Fracture repair has previously been shown to be sensitive to mechanical environment, yet the specifi...
After bone fracture, various cellular activities lead to the formation of different tissue types, wh...
After bone fracture, various cellular activities lead to the formation of different tissue types, wh...
Computational models are employed as tools to investigate possible mechano-regulation pathways for t...
Comparative anatomy and experimental studies suggest that the mass and distribution of tissue within...
Fracture repair is a complex process involving many different cellular processes that must be coordi...