The emergence of mode-locked near-IR (NIR) lasers has opened novel and exciting opportunities in dental and orthopaedic medicine. In a mode-locked laser cavity the pulse duration and repetition rates may be controlled between 10-100s of femtosecond (fs) and kHz-GHz ranges, respectively. This unique capability for controlling the incident laser power in a near-IR mode-locked laser has been explored for studying the materials phase transformation, sintering and bonding mechanisms in calcium phosphate and chitosan/calcium phosphate suspensions as biomaterials. The investigation primarily focusses on interaction of such a laser in a linear regime, resulting in a plethora of phase combinations and morphologically controlled structures, which are...
A radical new methodology for the exogenous mineralization of hard tissues is demonstrated in the co...
In this work, we aim to investigate the effect of Fe2+/Fe3+ doping on the laser sintering of calcium...
The authors acknowledge support from the sponsors of this work; Marie Curie IF (PRe-FActo), IKC PoF ...
The emergence of mode-locked near-IR (NIR) lasers has opened novel and exciting opportunities in den...
Direct laser sintering on hard tissues is likely to open new pathways for personalised medicine. To ...
Direct laser sintering on hard tissues is likely to open new pathways for personalised medicine. To ...
A radical new methodology for the exogenous mineralization of hard tissues is demonstrated in the co...
A radical new methodology for the exogenous mineralization of hard tissues is demonstrated in the co...
Here we present a platform technology for the direct sintering of calcium phosphates on dental hard ...
The breakthrough for dental laser systems came in the mid 1990's. Among the various laser types...
We investigated the laser sintering behaviour of rare-earth oxide doped calcium phosphate suspension...
Lasers have been well integrated in clinical dentistry for the last two decades, providing clinical ...
Acid-induced enamel erosion leading to dentine hypersensitivity is a growing problem for both the yo...
The biomaterials technology industry is already well established in the western world and is growing...
Although there has been progress in reducing the incidence of dental decay, dental caries remains a ...
A radical new methodology for the exogenous mineralization of hard tissues is demonstrated in the co...
In this work, we aim to investigate the effect of Fe2+/Fe3+ doping on the laser sintering of calcium...
The authors acknowledge support from the sponsors of this work; Marie Curie IF (PRe-FActo), IKC PoF ...
The emergence of mode-locked near-IR (NIR) lasers has opened novel and exciting opportunities in den...
Direct laser sintering on hard tissues is likely to open new pathways for personalised medicine. To ...
Direct laser sintering on hard tissues is likely to open new pathways for personalised medicine. To ...
A radical new methodology for the exogenous mineralization of hard tissues is demonstrated in the co...
A radical new methodology for the exogenous mineralization of hard tissues is demonstrated in the co...
Here we present a platform technology for the direct sintering of calcium phosphates on dental hard ...
The breakthrough for dental laser systems came in the mid 1990's. Among the various laser types...
We investigated the laser sintering behaviour of rare-earth oxide doped calcium phosphate suspension...
Lasers have been well integrated in clinical dentistry for the last two decades, providing clinical ...
Acid-induced enamel erosion leading to dentine hypersensitivity is a growing problem for both the yo...
The biomaterials technology industry is already well established in the western world and is growing...
Although there has been progress in reducing the incidence of dental decay, dental caries remains a ...
A radical new methodology for the exogenous mineralization of hard tissues is demonstrated in the co...
In this work, we aim to investigate the effect of Fe2+/Fe3+ doping on the laser sintering of calcium...
The authors acknowledge support from the sponsors of this work; Marie Curie IF (PRe-FActo), IKC PoF ...