Biomedical Engineering Reference
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References
[1] N. Okita, D. Ørstavik, J. Ørstavik, K. Østby, In vivo and in vitro studies on soft denture materials:
microbial adhesion and tests for antibacterial activity, Dent. Mater. 7 (1991) 155 160.
[2] D.R. Radford, S.J. Challacombe, J.D. Walter, Denture plaque and adherence of Candida albicans to
denture-base materials in vivo and in vitro, Crit. Rev. Oral. Biol. Med. 10 (1999) 99 116.
[3] R.G. Nair, L.P. Samaranayake, The effect of oral commensal bacteria on candidal adhesion to denture
acrylic surfaces. An in vitro study, APMIS 104 (1996) 339 349.
[4] C. Wilkieson, L.P. Samaranayake, T.W. MacFarlane, P.-J. Lamey, D. MacKenzie, Oral candidosis in the
elderly in long term hospital care, J. Oral. Pathol. Med. 20 (1991) 13 16.
[5] T. Rossi, J. Laine, E. Eerola, P. Kotilainen, R. Peltonen, Denture carriage of methicillin-resistant
Staphylococcus aureus, Lancet 345 (1995) 1557.
[6] A. Harrison, R.M. Basker, I.S. Smith, The compatibility of temporary soft materials with immersion
denture cleansers, Int. J. Prosthod. 2 (1989) 254 258.
[7] H. Nikawa, H. Iwanaga, T. Hamada, S. Yuhta, Effects of denture cleansers on direct soft denture lining
materials, J. Prosthet. Dent. 72 (1994) 657 662.
[8] L.M. De Visschere, L. Grooten, G. Theuniers, J.N. Vanobbergen, Oral hygiene of elderly people in long-
term care institutions—a cross sectional study, Gerodontology 23 (2006) 195 204.
[9] L.A. Casemiro, C.H. Gomes Martins, C. Pires-de-Souza Fde, H. Panzeri, Antimicrobial and mechanical
properties of acrylic resins with incorporated silver zinc zeolite—Part I, Gerodontology 25 (2008)
187 194.
[10] D.M. Quinn, The effectiveness, in vitro, of miconazole and ketoconazole combined with tissue condi-
tioners in inhibiting the growth of Candida albicans, J. Oral. Rehabil. 12 (1985) 177 182.
[11] M.R. Truhlar, K. Shay, P. Sohnle, Use of a new assay technique for quantification of antifungal activity
of nystatin incorporated in denture liners, J. Prosthet. Dent. 71 (1994) 517 524.
[12] C.K.W. Chow, D.W. Matear, H.P. Lawrence, Efficacy of antifungal agents in tissue conditioners in treating
candidiasis, Gerodontology 16 (1999) 110 118.
[13] A.S.F. Koopmans, N. Kippuw, J. de Graaff, Bacterial involvement in denture-induced stomatitis, J. Dent.
Res. 67 (1988) 1246 1250.
[14] E. Budtz-Jørgensen, E. Theilade, J. Theilade, H.A. Zander, Method for studying the development, struc-
ture and microflora of denture plaque, Scand. J. Dent. Res. 89 (1981) 149 156.
[15] J. Fu, J. Ji, D. Fan, J. Shen, Construction of antibacterial multilayer films containing nanosilver via
layer-by-layer assembly of heparin and chitosan-silver ions complex, J. Biomed. Mater. Res. A 79
(2006) 665 674.
[16] R.M. Slawson, H. Lee, J.T. Trevors, Bacterial interactions with silver, Biometals 3 (1990) 151 154.
[17] G. Zhao, S.E. Stevens Jr., Multiple parameters for the comprehensive evaluation of the susceptibility of
Escherichia coli to the silver ion, Biometals 11 (1) (1998) 27 32.
[18] V. Alt, T. Bechert, P. Steinr¨cke, M. Wagener, P. Seidel, E. Dingeldein, et al., An in vitro assessment of
the antibacterial properties and cytotoxicity of the nanoparticles silver bone cement, Biomaterials 25
(2004) 4383 4391.
[19] U. Samuel, J.P. Guggenbichler, Prevention of catheter-related infections: the potential of a new nano-
silver impregnated catheter, Int. J. Antimicrob. Agents 23 (2004) 75
78.
[20] J.B. Wright, K. Lam, D. Hansen, R.E. Burrell, Efficacy of topical silver against fungal burn wound
pathogens, Am. J. Infect. Control. 27 (1999) 344 350.
[21] H.G. Petering, Pharmacology and toxicology of heavy metals: silver, Pharmacol. Therapeut. 1 (1976)
127 130.
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