Strain-induced adaption of bone has been well-studied in an axial loading model of the mouse tibia. However, most outcomes of these studies are restricted to changes in bone architecture and do not explore the mechanical implications of those changes. Herein, we studied both the mechanical and morphological adaptions of bone to three strain levels using a targeted tibial loading mouse model. We hypothesized that loading would increase bone architecture and improve cortical mechanical properties in a dose-dependent fashion. The right tibiae of female C57BL/6 mice (8 week old) were compressively loaded for 2 weeks to a maximum compressive force of 8.8N, 10.6N, or 12.4N (generating periosteal strains on the anteromedial region of the mid-diaph...
The two major aims of the present study were: (i) quantify localised cortical bone adaptation at the...
IntroductionMechanical loading (i.e., exercise) is well known to influence bone mass. Experimental s...
cal stimulation is critical for bone architecture and bone mass. The aim of this study was to examin...
Strain-induced adaption of bone has been well-studied in an axial loading model of the mouse tibia. ...
Strain-induced adaption of bone has been well-studied in an axial loading model of the mouse tibia. ...
Although the in vivo tibial loading model has been used to study the bone formation response of mice...
Summary: Loading increases bone mass and strength in a site-specific manner; however, possible effec...
Summary: Loading increases bone mass and strength in a site-specific manner; however, possible effec...
Abstract Summary: Loading increases bone mass and strength in a site-specific manner; however, poss...
Summary: Loading increases bone mass and strength in a site-specific manner; however, possible effec...
The skeleton's osteogenic response to mechanical loading can be affected by loading duration and res...
Introduction Studies in cortical bone adaptation aim to identify and quantify the resorption/formati...
The ability of the skeleton to adapt to mechanical stimuli diminishes with age in diaphyseal cortica...
IntroductionMechanical loading (i.e., exercise) is well known to influence bone mass [1]. Experiment...
The in vivo mouse tibial loading model is used to evaluate the effectiveness of mechanical loading t...
The two major aims of the present study were: (i) quantify localised cortical bone adaptation at the...
IntroductionMechanical loading (i.e., exercise) is well known to influence bone mass. Experimental s...
cal stimulation is critical for bone architecture and bone mass. The aim of this study was to examin...
Strain-induced adaption of bone has been well-studied in an axial loading model of the mouse tibia. ...
Strain-induced adaption of bone has been well-studied in an axial loading model of the mouse tibia. ...
Although the in vivo tibial loading model has been used to study the bone formation response of mice...
Summary: Loading increases bone mass and strength in a site-specific manner; however, possible effec...
Summary: Loading increases bone mass and strength in a site-specific manner; however, possible effec...
Abstract Summary: Loading increases bone mass and strength in a site-specific manner; however, poss...
Summary: Loading increases bone mass and strength in a site-specific manner; however, possible effec...
The skeleton's osteogenic response to mechanical loading can be affected by loading duration and res...
Introduction Studies in cortical bone adaptation aim to identify and quantify the resorption/formati...
The ability of the skeleton to adapt to mechanical stimuli diminishes with age in diaphyseal cortica...
IntroductionMechanical loading (i.e., exercise) is well known to influence bone mass [1]. Experiment...
The in vivo mouse tibial loading model is used to evaluate the effectiveness of mechanical loading t...
The two major aims of the present study were: (i) quantify localised cortical bone adaptation at the...
IntroductionMechanical loading (i.e., exercise) is well known to influence bone mass. Experimental s...
cal stimulation is critical for bone architecture and bone mass. The aim of this study was to examin...