Effect of smear layers on the bonding of a self-etching primer to dentin (2000)
- Authors:
- USP affiliated author: CARVALHO, RICARDO MARINS DE - FOB
- School: FOB
- Subjects: DENTÍSTICA; DENTINA
- Language: Inglês
- Imprenta:
- Place of publication: New Maldin
- Date published: 2000
- Source:
- Título do periódico: The Journal of Adhesive Dentistry
- Volume/Número/Paginação/Ano: v. 2, n. 2, p. 99-116, 2000
-
ABNT
TAY, Franklin R; CARVALHO, Ricardo Marins de; SANO, Hidehiko; PASHLEY, David H. Effect of smear layers on the bonding of a self-etching primer to dentin. The Journal of Adhesive Dentistry, New Maldin, v. 2, n. 2, p. 99-116, 2000. -
APA
Tay, F. R., Carvalho, R. M. de, Sano, H., & Pashley, D. H. (2000). Effect of smear layers on the bonding of a self-etching primer to dentin. The Journal of Adhesive Dentistry, 2( 2), 99-116. -
NLM
Tay FR, Carvalho RM de, Sano H, Pashley DH. Effect of smear layers on the bonding of a self-etching primer to dentin. The Journal of Adhesive Dentistry. 2000 ; 2( 2): 99-116. -
Vancouver
Tay FR, Carvalho RM de, Sano H, Pashley DH. Effect of smear layers on the bonding of a self-etching primer to dentin. The Journal of Adhesive Dentistry. 2000 ; 2( 2): 99-116. - Adhesive-composite incompatibility: Part II
- Adhesive mechanism of a self-etching/self-priming adhesive resin to human enamel and dentin
- One-year comparison of metallic and translucent matrices in Class II composite resin restorations
- From dry bonding to water-wet bonding to ethanol-wet bonding: a review of the interactions between dentin matrix and solvated resins using a macromodel of the hybrid layer
- Chlorhexidine binding to mineralized versus demineralized dentin powder
- Effect of resin hydrophilicity and water storage on resin strength
- Dentine sealing provided by smear layer/smear plugs vs. adhesive resins/resin tags
- Avaliação da longevidade da união a dentina: efeito da quantidade de umidade para adesivos com diferentes solventes
- Surface chemistry and bonds of Y-TZP after plasma treatment
- H+-induced tension development in demineralized dentin matrix
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