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PUBMED FOR HANDHELDS

Journal Abstract Search


411 related items for PubMed ID: 22150723

  • 21. In Vitro Biofilm Formation on Titanium and Zirconia Implant Surfaces.
    Roehling S, Astasov-Frauenhoffer M, Hauser-Gerspach I, Braissant O, Woelfler H, Waltimo T, Kniha H, Gahlert M.
    J Periodontol; 2017 Mar; 88(3):298-307. PubMed ID: 27712464
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  • 22. Effect of the aging of titanium and zirconia abutment surfaces on the viability, adhesion, and proliferation of cells and the adhesion of microorganisms.
    Rigolin MSM, Barbugli PA, Jorge JH, Reis MRD, Adabo GL, Casemiro LA, Martins CHG, de Lima OJ, Mollo Junior FA.
    J Prosthet Dent; 2019 Dec; 122(6):564.e1-564.e10. PubMed ID: 31791536
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  • 23. An assessment of early colonisation of implant-abutment metal surfaces by single species and co-cultured bacterial periodontal pathogens.
    Jordan RP, Marsh L, Ayre WN, Jones Q, Parkes M, Austin B, Sloan AJ, Waddington RJ.
    J Dent; 2016 Oct; 53():64-72. PubMed ID: 27472955
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  • 24. Fatigue and fluoride corrosion on Streptococcus mutans adherence to titanium-based implant/component surfaces.
    Correa CB, Pires JR, Fernandes-Filho RB, Sartori R, Vaz LG.
    J Prosthodont; 2009 Jul; 18(5):382-7. PubMed ID: 19432761
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  • 25. In situ analysis of multispecies biofilm formation on customized titanium surfaces.
    Fröjd V, Chávez de Paz L, Andersson M, Wennerberg A, Davies JR, Svensäter G.
    Mol Oral Microbiol; 2011 Aug; 26(4):241-52. PubMed ID: 21729245
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  • 26. Surface free energy and bacterial retention to saliva-coated dental implant materials--an in vitro study.
    Mabboux F, Ponsonnet L, Morrier JJ, Jaffrezic N, Barsotti O.
    Colloids Surf B Biointerfaces; 2004 Dec 25; 39(4):199-205. PubMed ID: 15555904
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  • 27. Salivary pellicle composition and multispecies biofilm developed on titanium nitrided by cold plasma.
    Cavalcanti IM, Ricomini Filho AP, Lucena-Ferreira SC, da Silva WJ, Paes Leme AF, Senna PM, Del Bel Cury AA.
    Arch Oral Biol; 2014 Jul 25; 59(7):695-703. PubMed ID: 24769315
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  • 28. Surface modification and its effect on attachment, spreading, and proliferation of human gingival fibroblasts.
    Zhang F, Huang Y, Li X, Zhao S.
    Int J Oral Maxillofac Implants; 2011 Jul 25; 26(6):1183-92. PubMed ID: 22167422
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  • 33. An in vitro biofilm model associated to dental implants: structural and quantitative analysis of in vitro biofilm formation on different dental implant surfaces.
    Sánchez MC, Llama-Palacios A, Fernández E, Figuero E, Marín MJ, León R, Blanc V, Herrera D, Sanz M.
    Dent Mater; 2014 Oct 25; 30(10):1161-71. PubMed ID: 25110288
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  • 34. Attachment of oral gram-negative anaerobic rods to a smooth titanium surface: an electron microscopy study.
    Kuula H, Könönen E, Lounatmaa K, Konttinen YT, Könönen M.
    Int J Oral Maxillofac Implants; 2004 Oct 25; 19(6):803-9. PubMed ID: 15623054
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  • 35. [Effect of modification of titanium surfaces to graft poly(ethylene glycol)methacrylate-arginine-glycine-aspartic polymer brushes on bacterial adhesion and osteoblast cell attachment].
    Liu D, Gong YJ, Xiao Q, Li ZA.
    Zhonghua Kou Qiang Yi Xue Za Zhi; 2016 Aug 25; 51(8):491-5. PubMed ID: 27511041
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  • 40. Adsorption of salivary and serum proteins, and bacterial adherence on titanium and zirconia ceramic surfaces.
    Lima EM, Koo H, Vacca Smith AM, Rosalen PL, Del Bel Cury AA.
    Clin Oral Implants Res; 2008 Aug 25; 19(8):780-5. PubMed ID: 18705809
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