Schmidt-Braekling et al., 2017 - Google Patents
Silver-coated megaprostheses: review of the literatureSchmidt-Braekling et al., 2017
- Document ID
- 12431477827194300253
- Author
- Schmidt-Braekling T
- Streitbuerger A
- Gosheger G
- Boettner F
- Nottrott M
- Ahrens H
- Dieckmann R
- Guder W
- Andreou D
- Hauschild G
- Moellenbeck B
- Waldstein W
- Hardes J
- Publication year
- Publication venue
- European Journal of Orthopaedic Surgery & Traumatology
External Links
Snippet
Periprosthetic infection remains one of the most serious complications following megaendoprostheses. Despite a large number of preventive measures that have been introduced in recent years, it has not been possible to further reduce the rate of …
- BQCADISMDOOEFD-UHFFFAOYSA-N silver 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[Ag] 0 title abstract description 134
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Pan et al. | Coatings as the useful drug delivery system for the prevention of implant-related infections | |
Kose et al. | Silver ion doped ceramic nano-powder coated nails prevent infection in open fractures: in vivo study | |
Liu et al. | The antimicrobial and osteoinductive properties of silver nanoparticle/poly (DL-lactic-co-glycolic acid)-coated stainless steel | |
Fiore et al. | Silver-coated megaprosthesis in prevention and treatment of peri-prosthetic infections: A systematic review and meta-analysis about efficacy and toxicity in primary and revision surgery | |
Romanò et al. | Antibacterial coating of implants in orthopaedics and trauma: a classification proposal in an evolving panorama | |
Shivaram et al. | Understanding long-term silver release from surface modified porous titanium implants | |
Kose et al. | A silver ion-doped calcium phosphate-based ceramic nanopowder-coated prosthesis increased infection resistance | |
Scoccianti et al. | Levels of silver ions in body fluids and clinical results in silver-coated megaprostheses after tumour, trauma or failed arthroplasty | |
Cheng et al. | Long‐lasting in vivo and in vitro antibacterial ability of nanostructured titania coating incorporated with silver nanoparticles | |
Chen et al. | Antibacterial and osteogenic properties of silver‐containing hydroxyapatite coatings produced using a sol gel process | |
Tran et al. | Silver doped titanium oxide–PDMS hybrid coating inhibits Staphylococcus aureus and Staphylococcus epidermidis growth on PEEK | |
Hazer et al. | Antimicrobial effect of polymer-based silver nanoparticle coated pedicle screws: experimental research on biofilm inhibition in rabbits | |
Kumar et al. | Coatings on orthopedic implants to overcome present problems and challenges: A focused review | |
Harrasser et al. | Antibacterial potency of different deposition methods of silver and copper containing diamond-like carbon coated polyethylene | |
Eltorai et al. | Antimicrobial technology in orthopedic and spinal implants | |
Khalilpour et al. | Ag/SiOxCy plasma polymer coating for antimicrobial protection of fracture fixation devices | |
Diez-Escudero et al. | The role of silver coating for arthroplasty components | |
Wyatt et al. | The use of silver coating in hip megaprostheses: A systematic review | |
Lex et al. | Megaprosthesis anti-bacterial coatings: A comprehensive translational review | |
Tsukamoto et al. | Acute and subacute toxicity in vivo of thermal‐sprayed silver containing hydroxyapatite coating in rat tibia | |
Shiels et al. | Chlorhexidine-releasing implant coating on intramedullary nail reduces infection in a rat model | |
Vishwanath et al. | Silver as an antibiotic-independent antimicrobial: review of current formulations and clinical relevance |