Search results for "Zirconi"
showing 10 items of 413 documents
Small-diameter titanium Grade IV and titanium-zirconium implants in edentulous mandibles: three-year results from a double-blind, randomized controll…
2015
OBJECTIVE: The aim of this study was to compare crestal bone-level changes, soft tissue parameters and implant success and survival between small-diameter implants made of titanium/zirconium (TiZr) alloy or of Grade IV titanium (Ti) in edentulous mandibles restored with removable overdentures. MATERIALS AND METHODS: This was a randomized, controlled, double-blind, split-mouth multicenter clinical trial. Patients with edentulous mandibles received two Straumann bone-level implants (diameter 3.3 mm), one of Ti Grade IV (control) and one of TiZr (test), in the interforaminal region. Implants were loaded after 6-8 weeks and removable Locator-retained overdentures were placed within 2 weeks of l…
Small-diameter titanium grade IV and titanium-zirconium implants in edentulous mandibles: five-year results from a double-blind, randomized controlle…
2015
BACKGROUND The aim of this study was to compare the 5-year survival and success rates of 3.3 mm dental implants either made from titanium-zirconium (TiZr) alloy or from Grade IV titanium (Ti Grade IV) in mandibular implant-based removable overdentures. METHODS The core study had a follow-up period of 36 months and was designed as a randomized, controlled, double-blind, split-mouth multicenter clinical trial. Patients with edentulous mandibles received two Straumann Bone Level implants (diameter 3.3 mm, SLActive®), one of TiZr (test) and one of Ti Grade IV (control), in the interforaminal region. This follow-up study recruited patients from the core study and evaluated the plaque and sulcus …
CCDC 1424179: Experimental Crystal Structure Determination
2016
Related Article: Adrien T. Normand, Constantin G. Daniliuc, Birgit Wibbeling, Gerald Kehr, Pierre Le Gendre, Gerhard Erker|2016|Chem.-Eur.J.|22|4285|doi:10.1002/chem.201504792
CCDC 1424181: Experimental Crystal Structure Determination
2016
Related Article: Adrien T. Normand, Constantin G. Daniliuc, Birgit Wibbeling, Gerald Kehr, Pierre Le Gendre, Gerhard Erker|2016|Chem.-Eur.J.|22|4285|doi:10.1002/chem.201504792
CCDC 999524: Experimental Crystal Structure Determination
2015
Related Article: Elwira Bisz, Marzena Białek, Bartosz Zarychta|2015|Appl.Catal.,A|503|26|doi:10.1016/j.apcata.2015.06.033
CCDC 836588: Experimental Crystal Structure Determination
2012
Related Article: G.Mouchaham, N.Roques, S.Brandes, C.Duhayon, J.-P.Sutter|2011|Cryst.Growth Des.|11|5424|doi:10.1021/cg201008v
CCDC 836589: Experimental Crystal Structure Determination
2012
Related Article: G.Mouchaham, N.Roques, S.Brandes, C.Duhayon, J.-P.Sutter|2011|Cryst.Growth Des.|11|5424|doi:10.1021/cg201008v
CCDC 1424182: Experimental Crystal Structure Determination
2016
Related Article: Adrien T. Normand, Constantin G. Daniliuc, Birgit Wibbeling, Gerald Kehr, Pierre Le Gendre, Gerhard Erker|2016|Chem.-Eur.J.|22|4285|doi:10.1002/chem.201504792
CCDC 1424184: Experimental Crystal Structure Determination
2016
Related Article: Adrien T. Normand, Constantin G. Daniliuc, Birgit Wibbeling, Gerald Kehr, Pierre Le Gendre, Gerhard Erker|2016|Chem.-Eur.J.|22|4285|doi:10.1002/chem.201504792
CCDC 836590: Experimental Crystal Structure Determination
2012
Related Article: G.Mouchaham, N.Roques, S.Brandes, C.Duhayon, J.-P.Sutter|2011|Cryst.Growth Des.|11|5424|doi:10.1021/cg201008v