A 3D matrix was obtained based on a sintered composite material made of bioactive glass and dicalcium phosphate dihydrate. The regularities of the influence of the ratio of the mixture components and the firing temperature of the workpieces on the phase composition, porosity, strength and kinetics of dissolution of sintered specimens have been established. The possibility of directed formation of highly resorbable phases in sintered composites is shown. A personalized implant was obtained using the 3D modeling method
Lukina Yu.S., Sventskaya NV, Golikova PV et al. Reaction-bound bioresorbable composite material // Glass and ceramics. 2013.? 5.S. 21? 26.
[Lukina Yu. S., Sventskaya NV, Golikova PV et al. Reaction-bonded bioresorbable composite material // Glass and Ceram. 2011. V. 70. N 5? 6.P. 195? 199.]
Beletskiy BI, Sventskaya NV Silicon in living organisms and in biocomposite materials of a new generation // Glass and ceramics. 2009.? 3.S. 26? 31.
? Beletskii BI, Sventskaya NV Silicon in living organisms and new-generation biocomposite materials (review) // Glass and Ceram. 2009. V. 66. N 3? 4.P. 104? 108.?
Sventskaya N.V., Beletskiy B.I. Silicocalcium-phosphate biocomposite materials for bone-plastic surgery // Actual problems of innovative economics. 2014.? 6.S. 53? 64.
The article can be purchased
electronic!
PDF format
700 руб
UDK 666.016.2:616-77
Article type:
Biomaterials
Make a request