Bone defects caused by various factors may cause morphological and functional disorders that can seriously affect patient’s quality of life. Autologous bone grafting is morbid, involves numerous complications, and provides limited volume at donor site. Hence, tissue-engineered bone is a better alternative for repair of bone defects and for promoting a patient’s functional recovery. Besides good biocompatibility, scaffolding materials represented by hydroxyapatite (HA) composites in tissue-engineered bone also have strong ability to guide bone regeneration. The development of manufacturing technology and advances in material science have made HA composite scaffolding more closely related to the composition and mechanical properties of natura...
Bone is the substantial unit of human skeletal system, which supports the body and its movement. At ...
SummaryFor many years, bone graft substitutes have been used to reconstruct bone defects in orthoped...
New materials that mimic natural bone properties, matching functional, mechanical, and biological pr...
New materials that mimic natural bone properties, matching functional, mechanical, and biological pr...
Bone tissue is a nanocomposite consisting of an organic and inorganic matrix, in which the collagen ...
The consequences of bone traumatisation, loss or damage, resulting from injury or disease can dramat...
With over 500,000 bone grafting procedures performed annually in the United States alone, the advanc...
The biocompatibility and similarity of hydroxyapatite (HA) to the mineral composition of the bone ha...
Nano-hydroxyapatite (n-HAp) is similar to human bone mineral in structure and biochemistry and is, t...
The hydroxyapatite [HAp, Ca10(PO4)6(OH)2] has a variety of applications in bone fillers and replacem...
Limitations associated with conventional bone substitutes such as autografts, increasing demand for ...
Limitations associated with conventional bone substitutes such as autografts, increasing demand for ...
There is a critical clinical need for alternatives to autograft and allograft bone for over 500,000 ...
Abstract: A bone scaffold material (nano-HA / collagen/PLA composite) was developed by biomimetic sy...
The design of the bone scaffolds changes and develops with the developing technology and production ...
Bone is the substantial unit of human skeletal system, which supports the body and its movement. At ...
SummaryFor many years, bone graft substitutes have been used to reconstruct bone defects in orthoped...
New materials that mimic natural bone properties, matching functional, mechanical, and biological pr...
New materials that mimic natural bone properties, matching functional, mechanical, and biological pr...
Bone tissue is a nanocomposite consisting of an organic and inorganic matrix, in which the collagen ...
The consequences of bone traumatisation, loss or damage, resulting from injury or disease can dramat...
With over 500,000 bone grafting procedures performed annually in the United States alone, the advanc...
The biocompatibility and similarity of hydroxyapatite (HA) to the mineral composition of the bone ha...
Nano-hydroxyapatite (n-HAp) is similar to human bone mineral in structure and biochemistry and is, t...
The hydroxyapatite [HAp, Ca10(PO4)6(OH)2] has a variety of applications in bone fillers and replacem...
Limitations associated with conventional bone substitutes such as autografts, increasing demand for ...
Limitations associated with conventional bone substitutes such as autografts, increasing demand for ...
There is a critical clinical need for alternatives to autograft and allograft bone for over 500,000 ...
Abstract: A bone scaffold material (nano-HA / collagen/PLA composite) was developed by biomimetic sy...
The design of the bone scaffolds changes and develops with the developing technology and production ...
Bone is the substantial unit of human skeletal system, which supports the body and its movement. At ...
SummaryFor many years, bone graft substitutes have been used to reconstruct bone defects in orthoped...
New materials that mimic natural bone properties, matching functional, mechanical, and biological pr...