ZWR - Das Deutsche Zahnärzteblatt 2021; 130(07/08): 336-344
DOI: 10.1055/a-1539-0986
Fortbildung

Erste klinische Erfahrungen mit einer weiterentwickelten Lithiumdisilikatkeramik in der Chairside-Anwendung

Sven Rinke
,
Anna Metzger
,
Holger Ziebolz

Die Anfertigung von indirekten Restaurationen im Chairside-Verfahren ist seit mehr als 30 Jahren eine in der Praxis etablierte und wissenschaftlich abgesicherte Behandlungsoption insbesondere für Einzelzahnversorgungen. Innovative hochfeste keramische Werkstoffe sind dabei von Vorteil, um technische Komplikationen zu reduzieren und minimalinvasive Präparationskonzepte zu realisieren.



Publication History

Article published online:
06 August 2021

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  • Literatur

  • 1 Blatz MB, Conejo J. The Current State of Chairside Digital Dentistry and Materials. Dent Clin North Am 2019; 63: 175-197
  • 2 Zaruba M, Mehl A. Chairside systems: a current review. Int J Comput Dent 2017; 20: 123-149
  • 3 Baroudi K, Ibraheem SN. Assessment of Chair-side Computer-Aided Design and Computer-Aided Manufacturing Restorations: A Review of the Literature. J Int Oral Health 2015; 7: 96-104
  • 4 Rauch A, Reich S, Dalchau L. et al. Clinical survival of chair-side generated monolithic lithium disilicate crowns:10-year results. Clin Oral Investig 2018; 22: 1763-1769
  • 5 Wang X, Fan D, Swain MV. et al. A systematic review of all-ceramic crowns: clinical fracture rates in relation to restored tooth type. Int J Prosthodont 2012; 25: 441-450
  • 6 Heintze SD, Rousson V. Fracture rates of IPS Empress all-ceramic crowns--a systematic review. Int J Prosthodont 2010; 23: 129-133
  • 7 Spitznagel FA, Boldt J, Gierthmuehlen PC. CAD/CAM Ceramic Restorative Materials for Natural Teeth. J Dent Res 2018; 97: 1082-1091
  • 8 Le Fu, Engqvist H, Xia W. Glass-Ceramics in Dentistry: A Review. Materials (Basel) 2020; 13
  • 9 Sulaiman TA. Materials in digital dentistry-A review. J Esthet Restor Dent 2020; 32: 171-181
  • 10 Gorman CM, Ray NJ, Burke FM. The effect of endodontic access on all-ceramic crowns: A systematic review of in vitro studies. J Dent 2016; 53: 22-29
  • 11 Pieger S, Salman A, Bidra AS. Clinical outcomes of lithium disilicate single crowns and partial fixed dental prostheses: a systematic review. J Prosthet Dent 2014; 112: 22-30
  • 12 Zarone F, Di Mauro MI, Ausiello P. et al. Current status on lithium disilicate and zirconia: a narrative review. BMC Oral Health 2019; 19: 134
  • 13 Aziz A, El-Mowafy O, Paredes S. Clinical outcomes of lithium disilicate glass-ceramic crowns fabricated with CAD/CAM technology: A systematic review. Dent Med Probl 2020; 57: 197-206
  • 14 Grobecker-Karl T, Christian M, Karl M. Effect of endodontic access cavity preparation on monolithic and ceramic veneered zirconia restorations. Quintessence Int 2016; 47: 725-729
  • 15 Oguz Eİ, Kılıçarslan MA, Özcan M. Effect of endodontic access simulation on the fracture strength of lithium-disilicate and resin-matrix ceramic CAD-CAM crowns. J Esthet Restor Dent 2020; 32: 472-479
  • 16 van den Breemer CRG, Buijs GJ, Cune MS. et al. Prospective clinical evaluation of 765 partial glass-ceramic posterior restorations luted using photo-polymerized resin composite in conjunction with immediate dentin sealing. Clin Oral Investig 2021; 25: 1463-1473
  • 17 Baldissara P, Wandscher VF, Marchionatti AME. et al. Translucency of IPS e.max and cubic zirconia monolithic crowns. J Prosthet Dent 2018; 120: 269-275
  • 18 Belli R, Petschelt A, Hofner B. et al. Fracture Rates and Lifetime Estimations of CAD/CAM All-ceramic Restorations. J Dent Res 2016; 95: 67-73