Effects of Thermocycling on Antimicrobial Activity, Contact Angle, Surface Roughness, and Microhardness of Nanomodified Glass Ionomer Cement: An <i>In Vitro</i> Analysis. [PDF]
Vasudevan S, Paulraj J, Maiti S.
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Comparative Analysis of Color Stability and Its Impact on Artificial Aging: An In Vitro Study of Bioactive Chitosan, Titanium, Zirconia, and Hydroxyapatite Nanoparticle-Reinforced Glass Ionomer Cement Compared With Conventional Glass Ionomer Cement [PDF]
Dhivya Sri E +3 more
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Bioactive Compounds Enhance the Biocompatibility and the Physical Properties of a Glass Ionomer Cement. [PDF]
de Castilho ARF +6 more
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Ossicular Chain Reconstruction With Glass Ionomer Cement Following Removal of Active Middle Ear Implant. [PDF]
McFeely WJ, McFeely AE, Shohet JA.
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Evaluation of Flexural Strength and Microhardness of Different Type Glass Ionomer Cements
Kübra Bilge +2 more
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Comparative Evaluation of the Bond Strength Between Bioflx, Stainless Steel Crowns, and Stainless Steel Bands Using Type 1 Glass Ionomer Cement and Resin-modified Glass Ionomer Cement as Luting Agents: An <i>In Vitro</i> Study. [PDF]
Singh D +4 more
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Evaluation of Glass Ionomer Cement and Composite Resin Restorations in Hypomineralized Permanent First Molars: A Systematic Review and Meta-Analysis. [PDF]
Shah M +5 more
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Fabrication and characterization of reinforced glass ionomer cement by zinc oxide and hydroxyapatite nanoparticles. [PDF]
Azimi R, Shahgholi M, Khandan A.
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