Weight-bearing bone is constantly adapting its structure and function to mechanical environments. Loading through routine exercises stimulates bone formation and prevents bone loss, but unloading through bed rest and cast immobilization as well as exposure to weightlessness during spaceflight reduces its mass and strength. In order to elucidate the mechanism underlying unloading-driven bone adaptation, ground-based in vitro and in vivo analyses have been conducted using rotating cell culturing and hindlimb suspension. Focusing on gene expression studies in osteoblasts and hindlimb suspension studies, this minireview introduces our recent understanding on bone homeostasis under weightlessness in space. Most of the existing data indicate that...
Exposure to microgravity causes loss of lower body bone mass in some astronauts. Low-magnitude high-...
Spaceflight has deleterious effects on skeletal structure and function, specifically causingprofound...
Mechanical loading plays an important role in the development and maintenance of skeletal tissues. S...
Weight-bearing bone is constantly adapting its structure and function to mechanical environments. Lo...
Weight-bearing bone is constantly adapting its structure and function to mechanical environments. Lo...
Bone adaptation to spaceflight results in bone loss at weight bearing sites following the absence of...
The skeleton interacts with its environment in a way that resembles a mechanostat - through a contro...
Thesis: Ph. D., Harvard-MIT Program in Health Sciences and Technology, 2015.Cataloged from PDF versi...
Two simultaneous experiments were performed using 5-week-old male Sprague Dawley rats; in one study,...
International audienceAbstract Purpose of Review Osteocytes are considered to be the cells responsib...
Thesis: Ph. D., Harvard-MIT Program in Health Sciences and Technology, 2014.Cataloged from PDF versi...
Understanding the response of bone to mechanical loading (unloading) is extremely important in defin...
Mechanical unloading has deleterious effects on the musculoskeletal system and results in significan...
There is evidence that weightlessness and radiation, two elements of the spaceflight environment, ca...
Bone loss is a well-established problem in astronauts, and so is loss of muscle mass and strength. W...
Exposure to microgravity causes loss of lower body bone mass in some astronauts. Low-magnitude high-...
Spaceflight has deleterious effects on skeletal structure and function, specifically causingprofound...
Mechanical loading plays an important role in the development and maintenance of skeletal tissues. S...
Weight-bearing bone is constantly adapting its structure and function to mechanical environments. Lo...
Weight-bearing bone is constantly adapting its structure and function to mechanical environments. Lo...
Bone adaptation to spaceflight results in bone loss at weight bearing sites following the absence of...
The skeleton interacts with its environment in a way that resembles a mechanostat - through a contro...
Thesis: Ph. D., Harvard-MIT Program in Health Sciences and Technology, 2015.Cataloged from PDF versi...
Two simultaneous experiments were performed using 5-week-old male Sprague Dawley rats; in one study,...
International audienceAbstract Purpose of Review Osteocytes are considered to be the cells responsib...
Thesis: Ph. D., Harvard-MIT Program in Health Sciences and Technology, 2014.Cataloged from PDF versi...
Understanding the response of bone to mechanical loading (unloading) is extremely important in defin...
Mechanical unloading has deleterious effects on the musculoskeletal system and results in significan...
There is evidence that weightlessness and radiation, two elements of the spaceflight environment, ca...
Bone loss is a well-established problem in astronauts, and so is loss of muscle mass and strength. W...
Exposure to microgravity causes loss of lower body bone mass in some astronauts. Low-magnitude high-...
Spaceflight has deleterious effects on skeletal structure and function, specifically causingprofound...
Mechanical loading plays an important role in the development and maintenance of skeletal tissues. S...