Rehabilitación de implante pos-extracción; relato de caso clínico

Autores/as

  • Rosa Ana Chiluisa Muso
  • Paulo Andrés Salazar Sempertegui

Palabras clave:

Pilar, Cad-Cam, Ti-Base, Circonia, Corona de Cerámica.

Resumen

En las rehabilitaciones implanto soportadas del sector anterior la ejecución de un protocolo quirúrgico y protésico adecuado constituye un mecanismo para asegurar la estética y función de todo procedimiento a realizarse. El presente caso clínico tiene como objetivo la presentación de un protocolo rehabilitador en un implante pos-extracción y manejo de tejidos blandos para preservar la estética a través de estructuras protésicas a base de materiales de alta estética. La predictibilidad de un implante unitario en el sector anterior demanda al clínico conocer tridimensional las estructuras conjugado con un manejo de tejidos blando y materiales de forma adecuada, para predecir el comportamiento a mediano o largo plazo en la estabilidad protésica y preservación de la estética.

Descargas

Los datos de descarga aún no están disponibles.

Referencias

Kanbara T, Sekine H, Homma S, Yajima Y, Yoshinari M. Wear behavior between zirconia and titanium as an antagonist on fixed dental prostheses. Biomed Mater. 2014 Feb;9(2):25005.

Moilanen P, Hjerppe J, Lassila L, Närhi T. FRACTURE STRENGTH AND PRECISION OF FIT OF IMPLANT RETAINED MONOLITHIC ZIRCONIA CROWNS. J Oral Implantol [Internet]. 2018 May 15 [cited 2018 Jul 12];aaid-joi-D-17-00249. Available from: http://www.joionline.org/doi/10.1563/aaid-joi-D-17-00249

Al-Harbi FA, Ayad NM, Khan ZA, Mahrous AA, Morgano SM. In vitro shear bond strength of Y-TZP ceramics to different core materials with the use of three primer/resin cement systems. J Prosthet Dent [Internet]. 2016 Jan [cited 2018 May 31];115(1):84–9. Available from: http://www.ncbi.nlm.nih.gov/pubmed/26412003

Zhang Y, Mai Z, Barani A, Bush M, Lawn B. Fracture-resistant monolithic dental crowns. Dent Mater [Internet]. 2016 Mar [cited 2018 May 9];32(3):442–9. Available from: http://www.ncbi.nlm.nih.gov/pubmed/26792623

Prasad HA, Pasha N, Hilal M, Amarnath GS, Kundapur V, Anand M, et al. To Evaluate Effect of Airborne Particle Abrasion using Different Abrasives Particles and Compare Two Commercial Available Zirconia on Flexural Strength on Heat Treatment. Int J Biomed Sci [Internet]. 2017 Jun [cited 2018 May 24];13(2):93–112. Available from: http://www.ncbi.nlm.nih.gov/pubmed/28824346

Aurélio IL, Marchionatti AME, Montagner AF, May LG, Soares FZM. Does air particle abrasion affect the flexural strength and phase transformation of Y-TZP? A systematic review and meta-analysis. Dent Mater [Internet]. 2016 Jun [cited 2018 May 24];32(6):827–45. Available from: http://www.ncbi.nlm.nih.gov/pubmed/27083253

Rohr N, Brunner S, Märtin S, Fischer J. Influence of cement type and ceramic primer on retention of polymer-infiltrated ceramic crowns to a one-piece zirconia implant. J Prosthet Dent [Internet]. 2018 Jan [cited 2018 May 31];119(1):138–45. Available from: http://www.ncbi.nlm.nih.gov/pubmed/28461047

Campos F, Valandro L, Feitosa S, Kleverlaan C, Feilzer A, de Jager N, et al. Adhesive Cementation Promotes Higher Fatigue Resistance to Zirconia Crowns. Oper Dent [Internet]. 2017 Mar [cited 2018 May 14];42(2):215–24. Available from: http://www.ncbi.nlm.nih.gov/pubmed/27892840

Pilo R, Folkman M, Arieli A, Levartovsky S. Marginal Fit and Retention Strength of Zirconia Crowns Cemented by Self-adhesive Resin Cements. Oper Dent [Internet]. 2018 Mar [cited 2018 May 14];43(2):151–61. Available from: http://www.ncbi.nlm.nih.gov/pubmed/29394141

Silva CEP, Soares S, Machado CM, Bergamo ETP, Coelho PG, Witek L, et al. Effect of CAD/CAM Abutment Height and Cement Type on the Retention of Zirconia Crowns. Implant Dent [Internet]. 2018 Aug 21 [cited 2018 Sep 13];1. Available from: http://www.ncbi.nlm.nih.gov/pubmed/30134265

Pinheiro Tannure AL, Cunha AG, Borges Junior LA, da Silva Concílio LR, Claro Neves AC. Wear at the Implant-Abutment Interface of Zirconia Abutments Manufactured by Three CAD/CAM Systems. Int J Oral Maxillofac Implants [Internet]. [cited 2018 Jun 21];32(6):1241–50. Available from: http://www.ncbi.nlm.nih.gov/pubmed/29140369

Gehrke P, Alius J, Fischer C, Erdelt KJ, Beuer F. Retentive Strength of Two-Piece CAD/CAM Zirconia Implant Abutments. Clin Implant Dent Relat Res [Internet]. 2014 Dec [cited 2018 Jun 21];16(6):920–5. Available from: http://www.ncbi.nlm.nih.gov/pubmed/23527950

Conejo J, Kobayashi T, Anadioti E, Blatz MB. Performance of CAD/CAM monolithic ceramic Implant-supported restorations bonded to titanium inserts: A systematic review. Eur J Oral Implantol [Internet]. [cited 2018 Jun 21];10 Suppl 1:139–46. Available from: http://www.ncbi.nlm.nih.gov/pubmed/28944374

Elsayed A, Wille S, Al-Akhali M, Kern M. Comparison of fracture strength and failure mode of different ceramic implant abutments. J Prosthet Dent [Internet]. 2017 Apr [cited 2018 Jun 21];117(4):499–506. Available from: http://www.ncbi.nlm.nih.gov/pubmed/27769518

Martínez-Rus F, Ferreiroa A, Özcan M, Bartolomé JF, Pradíes G. Fracture resistance of crowns cemented on titanium and zirconia implant abutments: a comparison of monolithic versus manually veneered all-ceramic systems. Int J Oral Maxillofac Implants [Internet]. [cited 2018 Jun 21];27(6):1448–55. Available from: http://www.ncbi.nlm.nih.gov/pubmed/23189296

Descargas

Publicado

2019-10-05

Número

Sección

Reportes de casos/ Case reports

Cómo citar

Rehabilitación de implante pos-extracción; relato de caso clínico. (2019). Revista KIRU ISSN (Impreso): 1812 - 7886 ISSN (Digital): 2410-2717, 16(4). https://portalrevistas.aulavirtualusmp.pe/index.php/Rev-Kiru0/article/view/1692

Artículos similares

1-10 de 498

También puede Iniciar una búsqueda de similitud avanzada para este artículo.