A range of tissues have the capacity to adapt to mechanical challenges, an attribute presumed to be regulated through deformation of the cell and/or surrounding matrix. In contrast, it is shown here that extremely small oscillatory accelerations, applied as unconstrained motion and inducing negligible deformation, serve as an anabolic stimulus to osteoblasts in vivo. Habitual background loading was removed from the tibiae of 18 female adult mice by hindlimb-unloading. For 20 min/d, 5 d/ wk, the left tibia of each mouse was subjected to oscillatory 0.6 g accelerations at 45 Hz while the right tibia served as control. Sham-loaded (n = 9) and normal age-matched control (n = 18) mice provided additional comparisons. Oscillatory accelerations, a...
Osteoporosis is the most prevalent bone disease and represents a major public health burden. Resulti...
Bone is able to react to changing mechanical demands by adapting its internal microstructure through...
Mechanical loading is a potent anabolic stimulus that promotes bone formation. After skeletal develo...
High-frequency whole body vibrations can be osteogenic, but their efficacy appears limited to skelet...
ABSTRACT: High-frequency whole body vibrations can be osteogenic, but their efficacy appears limited...
Short durations of extremely small magnitude, high-frequency, mechanical stimuli can promote anaboli...
The skeleton’s sensitivity to mechanical stimuli represents a critical determinant of bone mass and ...
poster abstractHigh-impact exercise (running/jumping) can stimulate multiple anabolic responses (inc...
Identifying the molecular mechanisms that regulate bone\u27s adaptive response to alterations in loa...
Bone is a tissue that dynamically adapts mass and architecture to the mechanical loads that occur in...
Mechanical disuse will bias bone marrow stromal cells towards adipogenesis, ultimately compromising ...
Bone is able to react to changing mechanical demands by adapting its internal microstructure through...
Abstract only availablePrevious studies have shown that mechanical loading on the skeleton acts as a...
All living tissues and cells on Earth are subject to gravitational acceleration, but no reports have...
Introduction: Osteoporosis is a commonly observed medical condition in aging populations which resul...
Osteoporosis is the most prevalent bone disease and represents a major public health burden. Resulti...
Bone is able to react to changing mechanical demands by adapting its internal microstructure through...
Mechanical loading is a potent anabolic stimulus that promotes bone formation. After skeletal develo...
High-frequency whole body vibrations can be osteogenic, but their efficacy appears limited to skelet...
ABSTRACT: High-frequency whole body vibrations can be osteogenic, but their efficacy appears limited...
Short durations of extremely small magnitude, high-frequency, mechanical stimuli can promote anaboli...
The skeleton’s sensitivity to mechanical stimuli represents a critical determinant of bone mass and ...
poster abstractHigh-impact exercise (running/jumping) can stimulate multiple anabolic responses (inc...
Identifying the molecular mechanisms that regulate bone\u27s adaptive response to alterations in loa...
Bone is a tissue that dynamically adapts mass and architecture to the mechanical loads that occur in...
Mechanical disuse will bias bone marrow stromal cells towards adipogenesis, ultimately compromising ...
Bone is able to react to changing mechanical demands by adapting its internal microstructure through...
Abstract only availablePrevious studies have shown that mechanical loading on the skeleton acts as a...
All living tissues and cells on Earth are subject to gravitational acceleration, but no reports have...
Introduction: Osteoporosis is a commonly observed medical condition in aging populations which resul...
Osteoporosis is the most prevalent bone disease and represents a major public health burden. Resulti...
Bone is able to react to changing mechanical demands by adapting its internal microstructure through...
Mechanical loading is a potent anabolic stimulus that promotes bone formation. After skeletal develo...