Additive manufacturing using selective laser melted titanium (SLM-Ti) is used to create bespoke items across many diverse fields such as medicine, defense, and aerospace. Despite great progress in orthopedic implant applications, such as for “just in time” implants, significant challenges remain with regards to material osseointegration and the susceptibility to bacterial colonization on the implant. Here, we show that polycrystalline diamond coatings on these titanium samples can enhance biological scaffold interaction improving medical implant applicability. The highly conformable coating exhibited excellent bonding to the substrate. Relative to uncoated SLM-Ti, the diamond coated samples showed enhanced mammalian cell growth, enriched ap...
Joint replacement surgery is associated with significant morbidity and mortality following infection...
Additive manufacturing (AM) is gaining increasing interest for realization of customized porous tita...
Selective laser melting manufacture of patient specific Ti implants is serving as a promising approa...
Additive manufacturing using selective laser melted titanium (SLM-Ti) is used to create bespoke item...
Additive manufacturing using selective laser melted titanium (SLM-Ti) is used to create bespoke item...
Additive manufacturing using selective laser melted titanium (SLM-Ti) is used to create bespoke item...
Titanium-based implants are the leading material for orthopaedic surgery, due to their strength, ver...
Additively manufactured selective laser melted titanium (SLM-Ti) opens the possibility of tailored m...
Diamond-based implant materials make up an emerging research area where the materials could be prepa...
Polycrystalline diamond has the potential to improve the osseointegration of orthopedic implants com...
Additive manufacturing or 3D-printing is used to create bespoke items in many fields, such as defenc...
Implant therapy using osseointegratable titanium (Ti) dental implants has revolutionized clinical de...
With the increasing demand for low-cost and more efficient dental implants, there is an urgent need ...
By coating surfaces with nano-crystalline diamond (NCD) particles, hydrophilicity can be altered via...
Additive manufacturing has facilitated fabrication of complex and patient-specific metallic meta-bio...
Joint replacement surgery is associated with significant morbidity and mortality following infection...
Additive manufacturing (AM) is gaining increasing interest for realization of customized porous tita...
Selective laser melting manufacture of patient specific Ti implants is serving as a promising approa...
Additive manufacturing using selective laser melted titanium (SLM-Ti) is used to create bespoke item...
Additive manufacturing using selective laser melted titanium (SLM-Ti) is used to create bespoke item...
Additive manufacturing using selective laser melted titanium (SLM-Ti) is used to create bespoke item...
Titanium-based implants are the leading material for orthopaedic surgery, due to their strength, ver...
Additively manufactured selective laser melted titanium (SLM-Ti) opens the possibility of tailored m...
Diamond-based implant materials make up an emerging research area where the materials could be prepa...
Polycrystalline diamond has the potential to improve the osseointegration of orthopedic implants com...
Additive manufacturing or 3D-printing is used to create bespoke items in many fields, such as defenc...
Implant therapy using osseointegratable titanium (Ti) dental implants has revolutionized clinical de...
With the increasing demand for low-cost and more efficient dental implants, there is an urgent need ...
By coating surfaces with nano-crystalline diamond (NCD) particles, hydrophilicity can be altered via...
Additive manufacturing has facilitated fabrication of complex and patient-specific metallic meta-bio...
Joint replacement surgery is associated with significant morbidity and mortality following infection...
Additive manufacturing (AM) is gaining increasing interest for realization of customized porous tita...
Selective laser melting manufacture of patient specific Ti implants is serving as a promising approa...