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2010, Número 3

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Rev ADM 2010; 67 (3)


En la búsqueda del material restaurador inteligente

Carrillo SC
Texto completo Cómo citar este artículo

Idioma: Español
Referencias bibliográficas: 17
Paginas: 114-120
Archivo PDF: 435.59 Kb.


PALABRAS CLAVE

Sin palabras Clave

RESUMEN

Los cementos de ionómero de vidrio pueden convertirse en un recurso para encontrar el material restaurador inteligente.
Es uno, si no el único material, que gracias a su composición única exhibe propiedades especiales que le permiten comportarse con reacciones inteligentes a estímulos externos y encontrar funciones cercanas a la perspectiva de un material restaurador ideal.


REFERENCIAS (EN ESTE ARTÍCULO)

  1. Davidson, Carel: Glass Ionomer: A smart material. In: Bertelli, E., Ferrari, M.: Clinical alternatives in Restorative Dentistry. Dipartimento di scienze Odontostomatologiche. Universita degli studi di Siena. Cesrtosa di Pontignano, Siena, Italia. March 8-9, 2001 pp 11-19.

  2. Fontana, M., Gonzalez-Cabezas, C., Wilson, M.E. and Appert, C.: In-vitro evaluation of a smart dental material for its efficacy in preventing secondary caries using a microbial artificial mouth model. Am. J. Dent. 1999;12 (special issue) S 8-9

  3. Anusavice, K.: Does ART have a place in preservative dentistry. Comm. Dent. Oral Epidemiol. 1999; 27: 442-448.

  4. Mount, G.J.: Glass-Ionomers: Advantages, disadvantages and future implications. In: Davidson, C.L. and Mjor, I.A.: Advances in glass-ionomer cements. Chicago Quintessence Publishing Co. 1999 pp 269-293.

  5. Stanley, H.: Human pulp response to restorative dental procedures. Gainsenville. Storter Printing Co. 1981

  6. Brannstrom, M.: The relationship between dentin and pulp, and some problems in diagnosis. In: Dentin and pulp in restorative dentistry. London. Wolfe Medical publications. 1981. pp 9-41.

  7. Brannstrom, M.: Pulpal reactions to preparation and restorative materials. In:Reisbick, M.H.: Dental materials in clinical practice. Postgraduate dental handbook. England. John Wright and Sons, 1982 pp 291-308.

  8. Pashley, D.: Effect of the degree of tubule occlusion on the permeability of human dentin. Arch. Oral Biol. 1978;23: 1127-1133.

  9. Brannstrom, M.: Communication between the oral cavity and the dental pulp associated with restorative treatment. Buonocore memorial lecture. Oper. Dent. 9: 57-68, 1984.

  10. Brannstrom, M.: The experimental study of pulpal response to restorative materials and procedures. In: Dentin and pulp in restorative dentistry. London, Wolfe Medical publications, 1981 pp. 81-87.

  11. Pashley, D., Nakabayashi, N.: Hybridization of dental hard tissues. Chicago. Quintessence Publishing Co.1998.

  12. Mjor, A.I.: Pulp-dentin biology in restorative dentistry. Chicago. Quintessence Publishing Co., 2002.

  13. Ritter, A.V., Baratieri, L.N., Monteiro, S.: Protecao do complexo dentina-polpa. Cuaderno de dentistica. Livraria Santos editora, Ltda. 2003

  14. Wilson A, Kent B. Glass ionomer Cements. Chicago. Quintessence Publishing Co., 1989

  15. Carrillo C: SEM analysis of microestructure of restorative dental materials in the spectrum between glass ionomers and posterior composites. Dept of Biomaterials. The University of Michigan School of Dentistry. October 2002.

  16. Carrillo C: Analysis of microestructure of fluoride releasing dental materials in the spectrum between glass ionomers and posterior composites. Dept of Biomaterials. The University of Michigan School of Dentistry. November 2002.

  17. Davidson, C.L. and Mjor, I.M.: Advances in glass-ionomer cements. Chicago. Quintessence Publishing Co., 1999.




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