Human dental enamel has a porous mesostructure at the nanometre to micrometre scales that affects its thermal and mechanical properties relevant to laser treatment. We exploit finite-element models to investigate the response of this mesostructured enamel to mid-infrared lasers (CO 2 at 10.6 µm and Er:YAG at 2.94 µm). Our models might easily be adapted to investigate ablation of other brittle composite materials. The studies clarify the role of pore water in ablation, and lead to an understanding of the different responses of enamel to CO 2 and Er:YAG lasers, even though enamel has very similar average properties at the two wavelengths. We are able to suggest effective operating parameters for dental laser ablation, which should aid the int...
Using a Finite Element approach the authors model the influence of enamel’s microstructure and water...
We present a finite element model to investigate the dynamic thermal and mechanical response of cera...
Ideally projected to be applied on soft tissues, infrared lasers were improved by restorative dentis...
Human dental enamel has a porous mesostructure at the nanometre to micrometre scales that affects it...
We present finite element models of human dental enamel that account for water-pores known to exist ...
We present finite element models of human dental enamel that account for water-pores known to exist ...
AbstractThe mesostructure and composition of composite materials determine their mechanical, optical...
The mesostructure and composition of composite materials determine their mechanical, optical and the...
The mesostructure and composition of composite materials determine their mechanical, optical and the...
AbstractUsing a finite element approach the authors model the influence of enamel's microstructure a...
Using a finite element approach the authors model the influence of enamel's microstructure and water...
The mesostructure and composition of composite materials determine their mechanical, optical and the...
A mesoscopic simulation of the process of human enamel laser ablation by Er:YAG and CO2 lasers is be...
We present an analytical model for a ceramic material (hydroxyapatite) containing nanometre-scale wa...
Comunidade Europeia (CE). Fundo Europeu de Desenvolvimento Regional (FEDER).A mesoscopic simulation ...
Using a Finite Element approach the authors model the influence of enamel’s microstructure and water...
We present a finite element model to investigate the dynamic thermal and mechanical response of cera...
Ideally projected to be applied on soft tissues, infrared lasers were improved by restorative dentis...
Human dental enamel has a porous mesostructure at the nanometre to micrometre scales that affects it...
We present finite element models of human dental enamel that account for water-pores known to exist ...
We present finite element models of human dental enamel that account for water-pores known to exist ...
AbstractThe mesostructure and composition of composite materials determine their mechanical, optical...
The mesostructure and composition of composite materials determine their mechanical, optical and the...
The mesostructure and composition of composite materials determine their mechanical, optical and the...
AbstractUsing a finite element approach the authors model the influence of enamel's microstructure a...
Using a finite element approach the authors model the influence of enamel's microstructure and water...
The mesostructure and composition of composite materials determine their mechanical, optical and the...
A mesoscopic simulation of the process of human enamel laser ablation by Er:YAG and CO2 lasers is be...
We present an analytical model for a ceramic material (hydroxyapatite) containing nanometre-scale wa...
Comunidade Europeia (CE). Fundo Europeu de Desenvolvimento Regional (FEDER).A mesoscopic simulation ...
Using a Finite Element approach the authors model the influence of enamel’s microstructure and water...
We present a finite element model to investigate the dynamic thermal and mechanical response of cera...
Ideally projected to be applied on soft tissues, infrared lasers were improved by restorative dentis...