Studies investigating micromechanical properties in mouse cortical bone often solely focus on the mechanical behaviour along the long axis of the bone. Therefore, data on the anisotropy of mouse cortical bone is scarce. The aim of this study is the first-time evaluation of the anisotropy ratio between the longitudinal and transverse directions of reduced modulus and hardness in mouse femurs by using the nanoindentation technique. For this purpose, nine 22-week-old mice (C57BL/6) were sacrificed and all femurs extracted. A total of 648 indentations were performed with a Berkovich tip in the proximal (P), central (C) and distal (D) regions of the femoral shaft in the longitudinal and transverse directions. Higher values for reduced modulus ar...
In this work, we demonstrate the viability of using our recently developed data analysis procedures ...
The mechanical properties of cortical bone are a consequence of the interaction between the mineral ...
This thesis addresses observations and interpretation of nanoindentation behaviour in human bone (co...
Studies investigating micromechanical properties in mouse cortical bone often solely focus on the me...
Studies investigating micromechanical properties in mouse cortical bone often solely focus on the me...
Anisotropy is one of the most peculiar aspects of cortical bone mechanical behaviour, and the numeri...
Division of Biomechanics participates in a project together with Department of Cancer Research and M...
The purpose of this study is to investigate the effect of anisotropy of cortical bone tissue on meas...
The local spatial heterogeneity of the material properties of the cortical and trabecular bone extra...
The local spatial heterogeneity of the material properties of the cortical and trabecular bone extra...
Anisotropy is one of the most peculiar aspects of cortical bone mechanics; however, its anisotropic ...
International audienceThis work consists of the validation of a novel approach to estimate the local...
In this work, a finite element model was developed for the numerical simulation of nanoindentation t...
Nanoindentation provides the ideal framework to determine mechanical properties of bone at the tissu...
Nanoindentation testing is a technique that is used to measure mechanical properties of materials at...
In this work, we demonstrate the viability of using our recently developed data analysis procedures ...
The mechanical properties of cortical bone are a consequence of the interaction between the mineral ...
This thesis addresses observations and interpretation of nanoindentation behaviour in human bone (co...
Studies investigating micromechanical properties in mouse cortical bone often solely focus on the me...
Studies investigating micromechanical properties in mouse cortical bone often solely focus on the me...
Anisotropy is one of the most peculiar aspects of cortical bone mechanical behaviour, and the numeri...
Division of Biomechanics participates in a project together with Department of Cancer Research and M...
The purpose of this study is to investigate the effect of anisotropy of cortical bone tissue on meas...
The local spatial heterogeneity of the material properties of the cortical and trabecular bone extra...
The local spatial heterogeneity of the material properties of the cortical and trabecular bone extra...
Anisotropy is one of the most peculiar aspects of cortical bone mechanics; however, its anisotropic ...
International audienceThis work consists of the validation of a novel approach to estimate the local...
In this work, a finite element model was developed for the numerical simulation of nanoindentation t...
Nanoindentation provides the ideal framework to determine mechanical properties of bone at the tissu...
Nanoindentation testing is a technique that is used to measure mechanical properties of materials at...
In this work, we demonstrate the viability of using our recently developed data analysis procedures ...
The mechanical properties of cortical bone are a consequence of the interaction between the mineral ...
This thesis addresses observations and interpretation of nanoindentation behaviour in human bone (co...