Mechanical loading of mammalian tissues is a potent promoter of tissue growth and regeneration, whilst unloading in microgravity can cause reduced tissue regeneration, possibly through effects on stem cell tissue progenitors. To test the specific hypothesis that mechanical unloading alters differentiation of bone marrow mesenchymal and hematopoietic stem cell lineages, we studied cellular and molecular aspects of how bone marrow in the mouse proximal femur responds to unloading in microgravity. Trabecular and cortical endosteal bone surfaces in the femoral head underwent significant bone resorption in microgravity, enlarging the marrow cavity. Cells isolated from the femoral head marrow compartment showed significant down-regulation of gene...
Due to spaceflight, astronauts experience serious, weightlessness-induced bone loss because of an un...
Due to spaceflight, astronauts experience serious, weightlessness-induced bone loss because of an un...
The research of Dr. Almeida's Lab at NASA Ames focuses on the effects of microgravity mechanical unl...
AbstractMechanical loading of mammalian tissues is a potent promoter of tissue growth and regenerati...
AbstractMechanical loading of mammalian tissues is a potent promoter of tissue growth and regenerati...
Human regenerative health depends on constant tissue repair and regeneration by cells derived from s...
Mechanical unloading during spaceflight is known to adversely affect mammalian physiology. Our previ...
The detrimental effects of mechanical unloading in microgravity, including the musculo-skeletal syst...
Astronauts experience weightlessness-induced bone loss due to an unbalanced process of bone remodeli...
Astronauts experience weightlessness-induced bone loss due to an unbalanced process of bone remodeli...
Bone loss is a well known early event in astronauts and represents one of the major obstacle to spac...
While in space, astronauts exercise frequently to combat bone and muscle loss due to weightlessness....
While in space, astronauts exercise frequently to combat bone and muscle loss due to weightlessness....
While in space, astronauts exercise frequently to combat bone and muscle loss due to weightlessness....
Due to spaceflight, astronauts experience serious, weightlessness-induced bone loss because of an un...
Due to spaceflight, astronauts experience serious, weightlessness-induced bone loss because of an un...
Due to spaceflight, astronauts experience serious, weightlessness-induced bone loss because of an un...
The research of Dr. Almeida's Lab at NASA Ames focuses on the effects of microgravity mechanical unl...
AbstractMechanical loading of mammalian tissues is a potent promoter of tissue growth and regenerati...
AbstractMechanical loading of mammalian tissues is a potent promoter of tissue growth and regenerati...
Human regenerative health depends on constant tissue repair and regeneration by cells derived from s...
Mechanical unloading during spaceflight is known to adversely affect mammalian physiology. Our previ...
The detrimental effects of mechanical unloading in microgravity, including the musculo-skeletal syst...
Astronauts experience weightlessness-induced bone loss due to an unbalanced process of bone remodeli...
Astronauts experience weightlessness-induced bone loss due to an unbalanced process of bone remodeli...
Bone loss is a well known early event in astronauts and represents one of the major obstacle to spac...
While in space, astronauts exercise frequently to combat bone and muscle loss due to weightlessness....
While in space, astronauts exercise frequently to combat bone and muscle loss due to weightlessness....
While in space, astronauts exercise frequently to combat bone and muscle loss due to weightlessness....
Due to spaceflight, astronauts experience serious, weightlessness-induced bone loss because of an un...
Due to spaceflight, astronauts experience serious, weightlessness-induced bone loss because of an un...
Due to spaceflight, astronauts experience serious, weightlessness-induced bone loss because of an un...
The research of Dr. Almeida's Lab at NASA Ames focuses on the effects of microgravity mechanical unl...