which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited. Osteocytes, the major type of bone cells which reside in their lacunar and canalicular system within the bone matrix, function as biomechanosensors and biomechanotransducers of the bone. Although biomechanical behaviour of the osteocyte-lacunar-canalicular system has been investigated in previous studies mostly using computational 2-dimensional (2D) geometric models, only a few studies have used the 3-dimensional (3D) finite element (FE) model. In the current study, a 3D FE model was used to predict the responses of strain distributions of osteocyte-lacunar-canalicular system analyzed under static and cyclic loads. The...
The mechanism responsible for controlling the quantity and distribution of bone material is unknown,...
Osteocytes buried in bone matrix are major mechanosensory cells that regulate bone remodeling in res...
The aim of this paper is to determine the strain-rate-dependent mechanical behavior of living and fi...
Osteocytes, the major type of bone cells which reside in their lacunar and canalicular system within...
Osteocytes, the major type of bone cells which reside in their lacunar and canalicular system within...
The osteocyte is believed to act as the main sensor of mechanical stimulus in bone, controlling sign...
Osteocytes, the major type of bone cells embedded in the bone matrix and surrounded by the lacunar a...
Osteocytes, the major type of bone cells embedded in the bone matrix and surrounded by the lacunar a...
Contains fulltext : 69065.pdf (publisher's version ) (Closed access)The process of...
Abstract: Mechanotransduction refers to the mechanisms by which cells sense and respond to local loa...
The biological adaptation of bone to changes in its environment is a continual process known as bone...
It is still unclear how bones manage to generate and adapt their complex trabecular structures, what...
It is still unclear how bones manage to generate and adapt their complex trabecular structures, what...
Osteocytes are believed to be the primary sensor of mechanical stimuli in bone, which orchestrate os...
Osteocytes are mechanosensory cells which are embedded in calcified collagenous matrix. The specific...
The mechanism responsible for controlling the quantity and distribution of bone material is unknown,...
Osteocytes buried in bone matrix are major mechanosensory cells that regulate bone remodeling in res...
The aim of this paper is to determine the strain-rate-dependent mechanical behavior of living and fi...
Osteocytes, the major type of bone cells which reside in their lacunar and canalicular system within...
Osteocytes, the major type of bone cells which reside in their lacunar and canalicular system within...
The osteocyte is believed to act as the main sensor of mechanical stimulus in bone, controlling sign...
Osteocytes, the major type of bone cells embedded in the bone matrix and surrounded by the lacunar a...
Osteocytes, the major type of bone cells embedded in the bone matrix and surrounded by the lacunar a...
Contains fulltext : 69065.pdf (publisher's version ) (Closed access)The process of...
Abstract: Mechanotransduction refers to the mechanisms by which cells sense and respond to local loa...
The biological adaptation of bone to changes in its environment is a continual process known as bone...
It is still unclear how bones manage to generate and adapt their complex trabecular structures, what...
It is still unclear how bones manage to generate and adapt their complex trabecular structures, what...
Osteocytes are believed to be the primary sensor of mechanical stimuli in bone, which orchestrate os...
Osteocytes are mechanosensory cells which are embedded in calcified collagenous matrix. The specific...
The mechanism responsible for controlling the quantity and distribution of bone material is unknown,...
Osteocytes buried in bone matrix are major mechanosensory cells that regulate bone remodeling in res...
The aim of this paper is to determine the strain-rate-dependent mechanical behavior of living and fi...