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PUBMED FOR HANDHELDS

Journal Abstract Search


163 related items for PubMed ID: 21246018

  • 1. The effect of Er:YAG laser irradiation on the surface microstructure and roughness of hydroxyapatite-coated implant.
    Kim SW, Kwon YH, Chung JH, Shin SI, Herr Y.
    J Periodontal Implant Sci; 2010 Dec; 40(6):276-82. PubMed ID: 21246018
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  • 3. Effect of erbium-doped: yttrium, aluminium and garnet laser irradiation on the surface microstructure and roughness of sand-blasted, large grit, acid-etched implants.
    Lee JH, Kwon YH, Herr Y, Shin SI, Chung JH.
    J Periodontal Implant Sci; 2011 Jun; 41(3):135-42. PubMed ID: 21811689
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  • 4. The effect of Er:YAG laser irradiation on the scanning electron microscopic structure and surface roughness of various implant surfaces: an in vitro study.
    Shin SI, Min HK, Park BH, Kwon YH, Park JB, Herr Y, Heo SJ, Chung JH.
    Lasers Med Sci; 2011 Nov; 26(6):767-76. PubMed ID: 20694493
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  • 5. The effect of Er:YAG laser irradiation on hydroxyapatite-coated implants and fluoride-modified TiO2-blasted implant surfaces: a microstructural analysis.
    Shin SI, Lee EK, Kim JH, Lee JH, Kim SH, Kwon YH, Herr Y, Chung JH.
    Lasers Med Sci; 2013 May; 28(3):823-31. PubMed ID: 22833287
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  • 7. Effects of the Er:YAG laser irradiation on titanium implant materials and contaminated implant abutment surfaces.
    Matsuyama T, Aoki A, Oda S, Yoneyama T, Ishikawa I.
    J Clin Laser Med Surg; 2003 Feb; 21(1):7-17. PubMed ID: 12614554
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  • 8. Surface alterations of polished and sandblasted and acid-etched titanium implants after Er:YAG, carbon dioxide, and diode laser irradiation.
    Stubinger S, Etter C, Miskiewicz M, Homann F, Saldamli B, Wieland M, Sader R.
    Int J Oral Maxillofac Implants; 2010 Feb; 25(1):104-11. PubMed ID: 20209192
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  • 9. Bactericidal effect of the Er:YAG laser on dental implant surfaces: an in vitro study.
    Kreisler M, Kohnen W, Marinello C, Götz H, Duschner H, Jansen B, d'Hoedt B.
    J Periodontol; 2002 Nov; 73(11):1292-8. PubMed ID: 12479633
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  • 11. Effects of Er: YAG laser irradiation on wettability, surface roughness, and biocompatibility of SLA titanium surfaces: an in vitro study.
    Ayobian-Markazi N, Karimi M, Safar-Hajhosseini A.
    Lasers Med Sci; 2015 Feb; 30(2):561-6. PubMed ID: 23760881
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  • 13. An in vitro evaluation of the responses of human osteoblast-like SaOs-2 cells to SLA titanium surfaces irradiated by erbium:yttrium-aluminum-garnet (Er:YAG) lasers.
    Ayobian-Markazi N, Fourootan T, Zahmatkesh A.
    Lasers Med Sci; 2014 Jan; 29(1):47-53. PubMed ID: 23179305
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  • 14. Resin cement removal from titanium dental implant surface using a novel side-firing laser fiber and Er,Cr:YSGG irradiation.
    Walinski CJ, Ou KL.
    Am J Dent; 2020 Aug; 33(4):178-182. PubMed ID: 32794390
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  • 16. Optical coherence tomography characterizes the roughness and thickness of the heterogeneous layer on cortical bone surface induced by Er:YAG laser ablation at different moisture contents.
    Huang W, Gao C, Lan Y, Zeng S, Pathak JL, Zhou M, Ge L, Zhang J.
    Quant Imaging Med Surg; 2020 Mar; 10(3):713-726. PubMed ID: 32269931
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  • 20. Effect of Nd:YAG, Ho:YAG, Er:YAG, CO2, and GaAIAs laser irradiation on surface properties of endosseous dental implants.
    Kreisler M, Götz H, Duschner H.
    Int J Oral Maxillofac Implants; 2002 Mar; 17(2):202-11. PubMed ID: 11958402
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