All living tissues and cells on Earth are subject to gravitational acceleration, but no reports have verified whether acceleration mode influences bone formation and healing. Therefore, this study was to compare the effects of two acceleration modes, vibration and constant (centrifugal) accelerations, on bone formation and healing in the trunk using BMP 2-induced ectopic bone formation (EBF) mouse model and a rib fracture healing (RFH) rat model. Additionally, we tried to verify the difference in mechanism of effect on bone formation by accelerations between these two models. Three groups (low- and high-magnitude vibration and control-VA groups) were evaluated in the vibration acceleration study, and two groups (centrifuge acceleration and ...
Osteoporosis-induced bone fractures and their delayed healing are a frequent and worldwide problem. ...
ABSTRACTThis study aimed to examine the continuous effects of whole body vibration (WBV) on bone pro...
Mechanical disuse will bias bone marrow stromal cells towards adipogenesis, ultimately compromising ...
Vibration acceleration through whole body vibration has been reported to promote fracture healing. H...
OBJECTIVES:Vibration, in the form of high frequency acceleration (HFA), stimulates alveolar bone for...
Daily low-amplitude, high-frequency whole-body vibration (WBV) treatment can increase bone formation...
ObjectivesVibration, in the form of high frequency acceleration (HFA), stimulates alveolar bone form...
This study aimed to investigate the effects of low-magnitude, high-frequency vibration with rest day...
Introduction: Non-pharmacological treatment options as physical exercise are an essential corner sto...
Introduction: Vibration in the form of high frequency, low magnitude acceleration has paradoxical ef...
This study aimed to investigate the effects of low-magnitude, high-frequency vibration with rest day...
Fracture healing is impaired in aged and osteoporotic individuals. Because adequate mechanical stimu...
A range of tissues have the capacity to adapt to mechanical challenges, an attribute presumed to be ...
High-frequency whole body vibrations can be osteogenic, but their efficacy appears limited to skelet...
Whole body vibration involves the exposure of the entire human body to direct contact with environme...
Osteoporosis-induced bone fractures and their delayed healing are a frequent and worldwide problem. ...
ABSTRACTThis study aimed to examine the continuous effects of whole body vibration (WBV) on bone pro...
Mechanical disuse will bias bone marrow stromal cells towards adipogenesis, ultimately compromising ...
Vibration acceleration through whole body vibration has been reported to promote fracture healing. H...
OBJECTIVES:Vibration, in the form of high frequency acceleration (HFA), stimulates alveolar bone for...
Daily low-amplitude, high-frequency whole-body vibration (WBV) treatment can increase bone formation...
ObjectivesVibration, in the form of high frequency acceleration (HFA), stimulates alveolar bone form...
This study aimed to investigate the effects of low-magnitude, high-frequency vibration with rest day...
Introduction: Non-pharmacological treatment options as physical exercise are an essential corner sto...
Introduction: Vibration in the form of high frequency, low magnitude acceleration has paradoxical ef...
This study aimed to investigate the effects of low-magnitude, high-frequency vibration with rest day...
Fracture healing is impaired in aged and osteoporotic individuals. Because adequate mechanical stimu...
A range of tissues have the capacity to adapt to mechanical challenges, an attribute presumed to be ...
High-frequency whole body vibrations can be osteogenic, but their efficacy appears limited to skelet...
Whole body vibration involves the exposure of the entire human body to direct contact with environme...
Osteoporosis-induced bone fractures and their delayed healing are a frequent and worldwide problem. ...
ABSTRACTThis study aimed to examine the continuous effects of whole body vibration (WBV) on bone pro...
Mechanical disuse will bias bone marrow stromal cells towards adipogenesis, ultimately compromising ...