Condensation of pre-osteogenic, or pre-chondrogenic, cells is the first of a series of processes that initiate skeletal development. We present a validated, novel, three-dimensional agent-based model of in vitro intramembranous osteogenic condensation. The model, informed by system heterogeneity and relying on an interaction-reliant strategy, is shown to be sensitive to 'rules' capturing condensation growth and can be employed to track activity of individual cells to observe their macroscopic impact. It, therefore, makes available previously inaccessible data, offering new insights and providing a new context for exploring the emergence, as well as normal and abnormal development, of osteogenic structures. Of the several stages of condensat...
Mesenchymal stem cells (MSCs) within their native environment of the stem cell niche in bone receive...
Osteoporosis is the most prevalent bone disease and represents a major public health burden. Resulti...
Bone remodelling is carried out by 'bone multicellular units' ([Formula: see text]s) in which active...
Bone tissue continuously adapts to changes in mechanical load. This process can also result in a mal...
Bone is a dynamic tissue that remodels continuously in response to local mechanical and chemical sti...
This study examines the fundamental principles governing the early stages of skeletal morphoge...
The bone tissue engineering community has been striving to develop novel approaches that mimic natur...
During bone remodeling, osteoblasts are known to deposit unmineralized collagenous tissue (osteoid),...
In this study, we investigated a clinically relevant model of in vivo ectopic bone formation utilizi...
Bone multicellular units (BMUs) maintain the viability of the skeletal tissue by coordinating locall...
peer reviewedThe healing of large bone defects remains a major unmet medical need. Our developmental...
AbstractThe long bones of the developing skeleton, such as those of the limb, arise from the process...
Disruption of bone remodelling by diseases such as osteoporosis results in an imbalance between bone...
Osteoporosis is the most common skeletal disorder that thins and weakens the bones, yet the detailed...
Throughout one’s life a person’s bone constantly goes through bone resorption and bone formation in ...
Mesenchymal stem cells (MSCs) within their native environment of the stem cell niche in bone receive...
Osteoporosis is the most prevalent bone disease and represents a major public health burden. Resulti...
Bone remodelling is carried out by 'bone multicellular units' ([Formula: see text]s) in which active...
Bone tissue continuously adapts to changes in mechanical load. This process can also result in a mal...
Bone is a dynamic tissue that remodels continuously in response to local mechanical and chemical sti...
This study examines the fundamental principles governing the early stages of skeletal morphoge...
The bone tissue engineering community has been striving to develop novel approaches that mimic natur...
During bone remodeling, osteoblasts are known to deposit unmineralized collagenous tissue (osteoid),...
In this study, we investigated a clinically relevant model of in vivo ectopic bone formation utilizi...
Bone multicellular units (BMUs) maintain the viability of the skeletal tissue by coordinating locall...
peer reviewedThe healing of large bone defects remains a major unmet medical need. Our developmental...
AbstractThe long bones of the developing skeleton, such as those of the limb, arise from the process...
Disruption of bone remodelling by diseases such as osteoporosis results in an imbalance between bone...
Osteoporosis is the most common skeletal disorder that thins and weakens the bones, yet the detailed...
Throughout one’s life a person’s bone constantly goes through bone resorption and bone formation in ...
Mesenchymal stem cells (MSCs) within their native environment of the stem cell niche in bone receive...
Osteoporosis is the most prevalent bone disease and represents a major public health burden. Resulti...
Bone remodelling is carried out by 'bone multicellular units' ([Formula: see text]s) in which active...