The selective laser sintering (SLS) technique was used to manufacture hydroxyapatite-reinforced polyethylene and polyamide composites as potential customized maxillofacial implants. In vitro tests were carried Out to assess cellular responses, in terms of cell attachment, morphology, proliferation, differentiation, and mineralized nodule formation, using primary human osteoblast cells. This study showed that the SLS composite processed was biocompatible, with no adverse effects observed on cell viability and metabolic activity, supporting a normal metabolism and growth pattern for osteoblasts. Positive von Kossa staining demonstrated the presence of bone-like mineral on the SLS materials. Higher hydroxyapatite content composites enhanced ce...
Bioactive glasses are promising materials for bone scaffolds due to their ability to assist in tissu...
Certain material systems are currently playing significant roles in the medical application areas. C...
Selective laser sintering (SLS) has the potential to fabricate bioresorbable polymer / ceramic compo...
The selective laser sintering (SLS) technique was used to manufacture hydroxyapatite-reinforced poly...
The selective laser sintering (SLS) technique was used to manufacture hydroxyapatite-reinforced poly...
Selective Laser Sintering (SLS), an additive rapid manufacturing technique, is capable of producing ...
Hydroxyapatite, a ceramic with which natural bone inherently bonds, has been incorporated into a pol...
Selective laser sintering (SLS) has been investigated for the production of bioactive implants and t...
Hydroxyapatite (HA), a ceramic to which bone inherently bonds, incorporated into a polymer matrix en...
Bone loss due to surgery, disease, accidents, or ageing, can result in a functional handicap and cos...
Integration of the bone into the implant is highly desirable for the long-term performance of the im...
This paper presents an overview of the research work carried out for the rapid manufacture of hydrox...
Selective Laser Sintering (SLS) is used to fabricate tissue engineering scaffold due to its versatil...
Hydroxyapatite, a ceramic with which natural bone inherently bonds, has been incorporated into a pol...
Purpose – Hydroxyapatite-polymer composite materials are being researched for the development of low...
Bioactive glasses are promising materials for bone scaffolds due to their ability to assist in tissu...
Certain material systems are currently playing significant roles in the medical application areas. C...
Selective laser sintering (SLS) has the potential to fabricate bioresorbable polymer / ceramic compo...
The selective laser sintering (SLS) technique was used to manufacture hydroxyapatite-reinforced poly...
The selective laser sintering (SLS) technique was used to manufacture hydroxyapatite-reinforced poly...
Selective Laser Sintering (SLS), an additive rapid manufacturing technique, is capable of producing ...
Hydroxyapatite, a ceramic with which natural bone inherently bonds, has been incorporated into a pol...
Selective laser sintering (SLS) has been investigated for the production of bioactive implants and t...
Hydroxyapatite (HA), a ceramic to which bone inherently bonds, incorporated into a polymer matrix en...
Bone loss due to surgery, disease, accidents, or ageing, can result in a functional handicap and cos...
Integration of the bone into the implant is highly desirable for the long-term performance of the im...
This paper presents an overview of the research work carried out for the rapid manufacture of hydrox...
Selective Laser Sintering (SLS) is used to fabricate tissue engineering scaffold due to its versatil...
Hydroxyapatite, a ceramic with which natural bone inherently bonds, has been incorporated into a pol...
Purpose – Hydroxyapatite-polymer composite materials are being researched for the development of low...
Bioactive glasses are promising materials for bone scaffolds due to their ability to assist in tissu...
Certain material systems are currently playing significant roles in the medical application areas. C...
Selective laser sintering (SLS) has the potential to fabricate bioresorbable polymer / ceramic compo...