Osteocytes play a pivotal role in the regulation of skeletal mass. Osteocyte processes are thought to sense the flow of interstitial fluid that is driven through the osteocyte canaliculi by mechanical stimuli placed upon bone, but how this flow elicits a cellular response is virtually unknown. Modern theoretical models assume that osteocyte canaliculi contain ultrastructural features that amplify the fluid flow-derived mechanical signal. Unfortunately the calcified bone matrix has considerably hampered studies on the osteocyte process within its canaliculus. Using one of the few ultra high voltage electron microscopes (UHVEM) available worldwide, we applied UHVEM tomography at 2 MeV to reconstruct unique three-dimensional images of osteocyt...
Both the shape of bone organs and the micro-architecture of bone tissue are significantly influenced...
Osteocytes are involved in mechanosensation and mechanotransduction in bone and hence, are key to bo...
AbstractOsteocytes respond to dynamic fluid shear loading by activating various biochemical pathways...
Osteocytes play a pivotal role in the regulation of skeletal mass. Osteocyte processes are thought t...
Osteocytes are vital for regulating bone remodeling by sensing the flow-induced mechanical stimuli a...
Osteocytes buried in bone matrix are major mechanosensory cells that regulate bone remodeling in res...
Osteocytes are believed to be the primary sensor of mechanical stimuli in bone, which orchestrate os...
While the mechanotransductive capability of skeletal tissue has been acknowledged for decades, the e...
Both the shape of bone organs and the micro-architecture of bone tissue are significantly influenced...
Both the shape of bone organs and the micro-architecture of bone tissue are significantly influenced...
Publisher's PDFThe transport of fluid, nutrients, and signaling molecules in the bone lacunar-canali...
Existing theories for interstitial flows in bone have only examined the contributions from different...
The osteocyte lacuno-canalicular network (LCN) is essential for bone remodeling because osteocytes r...
ABSTRACT To explore the potential role that load-induced fluid flow plays as a mechano-transduction ...
A casting technique with methyl-methacrylate (MMA) was applied to the study of the osteon lacunar-ca...
Both the shape of bone organs and the micro-architecture of bone tissue are significantly influenced...
Osteocytes are involved in mechanosensation and mechanotransduction in bone and hence, are key to bo...
AbstractOsteocytes respond to dynamic fluid shear loading by activating various biochemical pathways...
Osteocytes play a pivotal role in the regulation of skeletal mass. Osteocyte processes are thought t...
Osteocytes are vital for regulating bone remodeling by sensing the flow-induced mechanical stimuli a...
Osteocytes buried in bone matrix are major mechanosensory cells that regulate bone remodeling in res...
Osteocytes are believed to be the primary sensor of mechanical stimuli in bone, which orchestrate os...
While the mechanotransductive capability of skeletal tissue has been acknowledged for decades, the e...
Both the shape of bone organs and the micro-architecture of bone tissue are significantly influenced...
Both the shape of bone organs and the micro-architecture of bone tissue are significantly influenced...
Publisher's PDFThe transport of fluid, nutrients, and signaling molecules in the bone lacunar-canali...
Existing theories for interstitial flows in bone have only examined the contributions from different...
The osteocyte lacuno-canalicular network (LCN) is essential for bone remodeling because osteocytes r...
ABSTRACT To explore the potential role that load-induced fluid flow plays as a mechano-transduction ...
A casting technique with methyl-methacrylate (MMA) was applied to the study of the osteon lacunar-ca...
Both the shape of bone organs and the micro-architecture of bone tissue are significantly influenced...
Osteocytes are involved in mechanosensation and mechanotransduction in bone and hence, are key to bo...
AbstractOsteocytes respond to dynamic fluid shear loading by activating various biochemical pathways...