Diamond is an attractive material for biomedical implants. In this work, we investigate its capacity as a bone scaffold. It is well established that the bioactivity of a material can be evaluated by examining its capacity to form apatite-like calcium phosphate phases on its surface when exposed to simulated body fluid. Accordingly, polycrystalline diamond (PCD) and ultrananocrystalline diamond (UNCD) deposited by microwave plasma chemical vapour deposition were exposed to simulated body fluid and assessed for apatite growth when compared to the bulk silicon. Scanning electron microscopy and X-ray photoelectron spectroscopy showed that both UNCD and PCD are capable of acting as a bone scaffold. The composition of deposited apatite suggests t...
The goal of this thesis was to study the growth of nanocrystalline diamond (NCD) on selected su b-st...
Diamond-based implant materials make up an emerging research area where the materials could be prepa...
The present invention refers to biocompatible porous scaffolds, especially bone regeneration scaffol...
Osteoporosis causes bones to become weak and brittle. It is known that the alterations in bone metab...
Medical implants are increasingly often inserted into bone of frail patients, who are advanced in ye...
Polycrystalline diamond has the potential to improve the osseointegration of orthopedic implants com...
Unique functional materials provide a platform as scaffolds for cell/tissue regeneration. Investigat...
Jana Liskova,1 Oleg Babchenko,2 Marian Varga,2 Alexander Kromka,2 Daniel Hadraba,1 Zdenek Svindrych,...
Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)Fundação de Amparo à Pesquisa do...
Additive manufacturing or 3D-printing is used to create bespoke items in many fields, such as defenc...
Abstract: Unique functional materials provide a platform as scaffolds for cell/tissue regeneration. ...
Titanium-based implants are the leading material for orthopaedic surgery, due to their strength, ver...
Nanocrystalline diamond (NCD) coatings combine a very low surface roughness with the outstanding dia...
Implant therapy using osseointegratable titanium (Ti) dental implants has revolutionized clinical de...
Additive manufacturing using selective laser melted titanium (SLM-Ti) is used to create bespoke item...
The goal of this thesis was to study the growth of nanocrystalline diamond (NCD) on selected su b-st...
Diamond-based implant materials make up an emerging research area where the materials could be prepa...
The present invention refers to biocompatible porous scaffolds, especially bone regeneration scaffol...
Osteoporosis causes bones to become weak and brittle. It is known that the alterations in bone metab...
Medical implants are increasingly often inserted into bone of frail patients, who are advanced in ye...
Polycrystalline diamond has the potential to improve the osseointegration of orthopedic implants com...
Unique functional materials provide a platform as scaffolds for cell/tissue regeneration. Investigat...
Jana Liskova,1 Oleg Babchenko,2 Marian Varga,2 Alexander Kromka,2 Daniel Hadraba,1 Zdenek Svindrych,...
Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)Fundação de Amparo à Pesquisa do...
Additive manufacturing or 3D-printing is used to create bespoke items in many fields, such as defenc...
Abstract: Unique functional materials provide a platform as scaffolds for cell/tissue regeneration. ...
Titanium-based implants are the leading material for orthopaedic surgery, due to their strength, ver...
Nanocrystalline diamond (NCD) coatings combine a very low surface roughness with the outstanding dia...
Implant therapy using osseointegratable titanium (Ti) dental implants has revolutionized clinical de...
Additive manufacturing using selective laser melted titanium (SLM-Ti) is used to create bespoke item...
The goal of this thesis was to study the growth of nanocrystalline diamond (NCD) on selected su b-st...
Diamond-based implant materials make up an emerging research area where the materials could be prepa...
The present invention refers to biocompatible porous scaffolds, especially bone regeneration scaffol...