Publication: An in vitro comparison of the marginal and internal adaptation of ultrathin occlusal veneers made of 3D-printed zirconia, milled zirconia, and heat-pressed lithium disilicate
An in vitro comparison of the marginal and internal adaptation of ultrathin occlusal veneers made of 3D-printed zirconia, milled zirconia, and heat-pressed lithium disilicate
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Ioannidis, A., Park, J.-M., Hüsler, J., Bomze, D., Mühlemann, S., & Özcan, M. (2022). An in vitro comparison of the marginal and internal adaptation of ultrathin occlusal veneers made of 3D-printed zirconia, milled zirconia, and heat-pressed lithium disilicate. Journal of Prosthetic Dentistry, 128(4), 709–715. https://doi.org/10.1016/j.prosdent.2020.09.053
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Abstract
STATEMENT OF PROBLEM Whether additively produced zirconia could overcome problems with conventional computer-aided design and computer-aided manufacture (CAD-CAM) such as milling inaccuracies and provide accurate occlusal veneers is unclear. PURPOSE The purpose of this in vitro study was to compare the marginal and internal fit of 3D-printed zirconia occlusal veneers with CAD-CAM-fabricated zirconia or heat-pressed lithium disilicate ceramic (LS2) restorations on molars. MATERIAL AND METHODS The occlusal enamel in 60 extracted human m
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Ioannidis, A., Park, J.-M., Hüsler, J., Bomze, D., Mühlemann, S., & Özcan, M. (2022). An in vitro comparison of the marginal and internal adaptation of ultrathin occlusal veneers made of 3D-printed zirconia, milled zirconia, and heat-pressed lithium disilicate. Journal of Prosthetic Dentistry, 128(4), 709–715. https://doi.org/10.1016/j.prosdent.2020.09.053