Wollastonite (CaSiO3)\u2013diopside (CaMgSi2O6) glass-ceramic scaffolds have been successfully fabricated using two different additive manufacturing techniques: powder-based 3D printing (3DP) and digital light processing (DLP), coupled with the sinter-crystallization of glass powders with two different compositions. The adopted manufacturing process depended on the balance between viscous flow sintering and crystallization of the glass particles, in turn influenced by the powder size and the sensitivity of CaO\u2013MgO\u2013SiO2 glasses to surface nucleation. 3DP used coarser glass powders and was more appropriate for low temperature firing (800\u2013900 \ub0C), leading to samples with limited crystallization. On the contrary, DLP used fine...
Highly porous wollastonite-diopside glass-ceramics have been successfully obtained by a new gel-cast...
Bioactive glasses have the ability to regenerate bone defects as they form a rapid bond with bone an...
The sintering and crystallization behaviours of alkali free bioactive glass compositions designed in...
The Biosilicate® glass-ceramic is one of the most promising alternatives to the 45S5 Bioglass® in te...
A novel concept for the additive manufacturing of three-dimensional glass-ceramic scaffolds, to be u...
In this work, the possibility of shaping a glass-filled photosensitive polymer resin with Digital Li...
Novel manufacturing techniques such as additive manufacturing also referred to as 3D printing hold a...
The use of porous three-dimensional bioceramic scaffolds to support bone tissue growth and regenerat...
The cooling of a melt corresponding to the eutectic between wollastonite (CaSiO3) and diopside (CaMg...
Highly porous (>60% open porosity) glass-ceramic scaffolds with remarkable mechanical properties (co...
One key feature of digital light processing consists of the high flexibility in the design of highly...
Highly porous wollastonite-diopside glass-ceramics have been successfully obtained by a new gel-cast...
Glass-ceramics containing only apatite and wollastonite crystals were produced in the system MgO-CaO...
Glass–ceramic macroporous scaffolds for tissue engineering have been developed using a polyurethane ...
Bioactive-glass-derived scaffolds are crucial in bone tissue engineering since they act as temporary...
Highly porous wollastonite-diopside glass-ceramics have been successfully obtained by a new gel-cast...
Bioactive glasses have the ability to regenerate bone defects as they form a rapid bond with bone an...
The sintering and crystallization behaviours of alkali free bioactive glass compositions designed in...
The Biosilicate® glass-ceramic is one of the most promising alternatives to the 45S5 Bioglass® in te...
A novel concept for the additive manufacturing of three-dimensional glass-ceramic scaffolds, to be u...
In this work, the possibility of shaping a glass-filled photosensitive polymer resin with Digital Li...
Novel manufacturing techniques such as additive manufacturing also referred to as 3D printing hold a...
The use of porous three-dimensional bioceramic scaffolds to support bone tissue growth and regenerat...
The cooling of a melt corresponding to the eutectic between wollastonite (CaSiO3) and diopside (CaMg...
Highly porous (>60% open porosity) glass-ceramic scaffolds with remarkable mechanical properties (co...
One key feature of digital light processing consists of the high flexibility in the design of highly...
Highly porous wollastonite-diopside glass-ceramics have been successfully obtained by a new gel-cast...
Glass-ceramics containing only apatite and wollastonite crystals were produced in the system MgO-CaO...
Glass–ceramic macroporous scaffolds for tissue engineering have been developed using a polyurethane ...
Bioactive-glass-derived scaffolds are crucial in bone tissue engineering since they act as temporary...
Highly porous wollastonite-diopside glass-ceramics have been successfully obtained by a new gel-cast...
Bioactive glasses have the ability to regenerate bone defects as they form a rapid bond with bone an...
The sintering and crystallization behaviours of alkali free bioactive glass compositions designed in...