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PUBMED FOR HANDHELDS

Journal Abstract Search


169 related items for PubMed ID: 33086380

  • 1. Galleria mellonella as an alternative in vivo model to study bacterial biofilms on stainless steel and titanium implants.
    Mannala GK, Rupp M, Alagboso F, Kerschbaum M, Pfeifer C, Sommer U, Kampschulte M, Domann E, Alt V.
    ALTEX; 2021; 38(2):245-252. PubMed ID: 33086380
    [Abstract] [Full Text] [Related]

  • 2. Galleria mellonella as an alternative in vivo model to study implant-associated fungal infections.
    Mannala GK, Rupp M, Walter N, Scholz KJ, Simon M, Riool M, Alt V.
    J Orthop Res; 2023 Nov; 41(11):2547-2559. PubMed ID: 37080929
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  • 3. The impact of thermal cycling on Staphylococcus aureus biofilm growth on stainless steel and titanium orthopaedic plates.
    Akens MK, Chien C, Katchky RN, Kreder HJ, Finkelstein J, Whyne CM.
    BMC Musculoskelet Disord; 2018 Jul 27; 19(1):260. PubMed ID: 30049271
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  • 6. New quantitative image analysis of staphylococcal biofilms on the surfaces of nontranslucent metallic biomaterials.
    Adachi K, Tsurumoto T, Yonekura A, Nishimura S, Kajiyama S, Hirakata Y, Shindo H.
    J Orthop Sci; 2007 Mar 27; 12(2):178-84. PubMed ID: 17393274
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  • 9. Quantitative flow chamber system for evaluating in vitro biofilms and the kinetics of S. aureus biofilm formation in human plasma media.
    Sutipornpalangkul W, Nishitani K, Schwarz EM.
    BMC Microbiol; 2021 Nov 11; 21(1):314. PubMed ID: 34763655
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  • 10. Alternative method in Galleria mellonella larvae to study biofilm infection and treatment.
    Campos-Silva R, Brust FR, Trentin DS, Macedo AJ.
    Microb Pathog; 2019 Dec 11; 137():103756. PubMed ID: 31546000
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  • 11. Manual polishing of 3D printed metals produced by laser powder bed fusion reduces biofilm formation.
    McGaffey M, Zur Linden A, Bachynski N, Oblak M, James F, Weese JS.
    PLoS One; 2019 Dec 11; 14(2):e0212995. PubMed ID: 30811509
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  • 12. Titanium and steel fracture fixation plates with different surface topographies: Influence on infection rate in a rabbit fracture model.
    Metsemakers WJ, Schmid T, Zeiter S, Ernst M, Keller I, Cosmelli N, Arens D, Moriarty TF, Richards RG.
    Injury; 2016 Mar 11; 47(3):633-9. PubMed ID: 26830128
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  • 13. Implant-associated biofilm infection established in an experimental Galleria mellonella model.
    You J, Park J, Choi D, Yun J, Choi H, Lee IH.
    Dev Comp Immunol; 2023 May 11; 142():104670. PubMed ID: 36796467
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  • 14. Novel Antibiotic-loaded Point-of-care Implant Coating Inhibits Biofilm.
    Jennings JA, Carpenter DP, Troxel KS, Beenken KE, Smeltzer MS, Courtney HS, Haggard WO.
    Clin Orthop Relat Res; 2015 Jul 11; 473(7):2270-82. PubMed ID: 25604874
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  • 15. Impact of implant metal type and vancomycin prophylaxis on postoperative spine infection: an in-vivo study.
    Gupta S, Maitra S, Farooqi AS, Gupta K, Wetpiriyakul P, Pereira M, Durbin-Johnson B, Gupta MC.
    Spine Deform; 2023 Jul 11; 11(4):815-823. PubMed ID: 36920741
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  • 16. Microbiological and ultrastructural evaluation of bacteriophage 191219 against planktonic, intracellular and biofilm infection with Staphylococcus aureus.
    Mannala GK, Rupp M, Walter N, Brunotte M, Alagboso F, Docheva D, Brochhausen C, Alt V.
    Eur Cell Mater; 2022 Feb 24; 43():66-78. PubMed ID: 35201606
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  • 18. Adherence and biofilm formation of Staphylococcus epidermidis and Mycobacterium tuberculosis on various spinal implants.
    Ha KY, Chung YG, Ryoo SJ.
    Spine (Phila Pa 1976); 2005 Jan 01; 30(1):38-43. PubMed ID: 15626979
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  • 20. Multicycle mechanical performance of titanium and stainless steel transpedicular spine implants.
    Pienkowski D, Stephens GC, Doers TM, Hamilton DM.
    Spine (Phila Pa 1976); 1998 Apr 01; 23(7):782-8. PubMed ID: 9563108
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