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PUBMED FOR HANDHELDS

Journal Abstract Search


111 related items for PubMed ID: 10713562

  • 1. In vitro model for frontal sinus obliteration with bioactive glass S53P4.
    Peltola MJ, Suonpää JT, Andersson H, Määttänen HS, Aitasalo KM, Yli-Urpo A, Laippala PJ.
    J Biomed Mater Res; 2000; 53(2):161-6. PubMed ID: 10713562
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  • 2. Clinical follow-up method for frontal sinus obliteration with bioactive glass S53P4.
    Peltola MJ, Suonpää JT, Määttänen HS, Varpula MJ, Aitasalo KM, Yli-Urpo A, Laippala PJ.
    J Biomed Mater Res; 2001; 58(1):54-60. PubMed ID: 11152998
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  • 3. Experimental follow-up model for clinical frontal sinus obliteration with bioactive glass (S53P4).
    Peltola M, Suonpää J, Aitasalo K, Määttänen H, Andersson O, Yli-Urpo A, Laippala P.
    Acta Otolaryngol Suppl; 2000; 543():167-9. PubMed ID: 10909011
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  • 4. In vivo model for frontal sinus and calvarial bone defect obliteration with bioactive glass S53P4 and hydroxyapatite.
    Peltola MJ, Aitasalo KM, Suonpää JT, Yli-Urpo A, Laippala PJ.
    J Biomed Mater Res; 2001 May 01; 58(3):261-9. PubMed ID: 11319739
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  • 8. Effect of pre-treatment of crystallized bioactive glass with cell culture media on structure, degradability, and biocompatibility.
    Thavornyutikarn B, Feltis B, Wright PFA, Turney TW.
    Mater Sci Eng C Mater Biol Appl; 2019 Apr 01; 97():188-197. PubMed ID: 30678903
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  • 9. In vitro surface reaction layer formation and dissolution of calcium phosphate cement-bioactive glass composites.
    Liu C, Chen CW, Ducheyne P.
    Biomed Mater; 2008 Sep 01; 3(3):034111. PubMed ID: 18689928
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  • 12. Resorption of the calcium phosphate layer on S53P4 bioactive glass by osteoclasts.
    van Gestel NAP, Schuiringa GH, Hennissen JHPH, Delsing ACA, Ito K, van Rietbergen B, Arts JJ, Hofmann S.
    J Mater Sci Mater Med; 2019 Aug 14; 30(8):94. PubMed ID: 31414232
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  • 13. The effect of in vitro modeling conditions on the surface reactions of bioactive glass.
    Radin S, Ducheyne P, Rothman B, Conti A.
    J Biomed Mater Res; 1997 Dec 05; 37(3):363-75. PubMed ID: 9368141
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  • 14. TRIS buffer in simulated body fluid distorts the assessment of glass-ceramic scaffold bioactivity.
    Rohanová D, Boccaccini AR, Yunos DM, Horkavcová D, Březovská I, Helebrant A.
    Acta Biomater; 2011 Jun 05; 7(6):2623-30. PubMed ID: 21345388
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  • 15. In vitro response of human osteoblasts to multi-step sol-gel derived bioactive glass nanoparticles for bone tissue engineering.
    Fan JP, Kalia P, Di Silvio L, Huang J.
    Mater Sci Eng C Mater Biol Appl; 2014 Mar 01; 36():206-14. PubMed ID: 24433905
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  • 17. In vitro Ca-P precipitation on biodegradable thermoplastic composite of poly(epsilon-caprolactone-co-DL-lactide) and bioactive glass (S53P4).
    Jaakkola T, Rich J, Tirri T, Närhi T, Jokinen M, Seppälä J, Yli-Urpo A.
    Biomaterials; 2004 Feb 01; 25(4):575-81. PubMed ID: 14607495
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  • 18. Using the frontal intersinus septal cell to widen the narrow frontal recess.
    Chiu AG, Vaughan WC.
    Laryngoscope; 2004 Jul 01; 114(7):1315-7. PubMed ID: 15235368
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