Evaluation of the marginal and internal gaps of three different dental prostheses: comparison of the silicone replica technique and three-dimensional superimposition analysis
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Woong-Chul Kim | So-Yeon Bae | Jin-Young Park | Hae-Young Kim | Ji-Hwan Kim | Jae-Jun Lee | Jinyoung Park | Woong-Chul Kim | So-Yeon Bae | Jae-Jun Lee | Ji-Hwan Kim | Hae-Young Kim
[1] Leonardo Lins,et al. In vitro evaluation of the internal and marginal misfit of CAD/CAM zirconia copings. , 2015, The Journal of prosthetic dentistry.
[2] W. Mörmann,et al. Marginal and internal fit of all-ceramic CAD/CAM crown-copings on chamfer preparations. , 2005, Journal of oral rehabilitation.
[3] Evanthia Anadioti,et al. Internal fit of pressed and computer-aided design/computer-aided manufacturing ceramic crowns made from digital and conventional impressions. , 2015, The Journal of prosthetic dentistry.
[4] Andreas Schwitalla,et al. PEEK dental implants: a review of the literature. , 2013, The Journal of oral implantology.
[5] G. Thomas,et al. 3D and 2D marginal fit of pressed and CAD/CAM lithium disilicate crowns made from digital and conventional impressions. , 2014, Journal of prosthodontics : official journal of the American College of Prosthodontists.
[6] Tabea V Flügge,et al. Precision of intraoral digital dental impressions with iTero and extraoral digitization with the iTero and a model scanner. , 2013, American journal of orthodontics and dentofacial orthopedics : official publication of the American Association of Orthodontists, its constituent societies, and the American Board of Orthodontics.
[7] Edgar Erdfelder,et al. G*Power 3: A flexible statistical power analysis program for the social, behavioral, and biomedical sciences , 2007, Behavior research methods.
[8] F. Zarone,et al. Clinical evaluation of 860 anterior and posterior lithium disilicate restorations: retrospective study with a mean follow-up of 3 years and a maximum observational period of 6 years. , 2014, The International journal of periodontics & restorative dentistry.
[9] Sangwon Park,et al. Sintering behavior and mechanical properties of zirconia compacts fabricated by uniaxial press forming , 2010, The journal of advanced prosthodontics.
[10] Jin-Hun Jeon,et al. Three-dimensional evaluation of the repeatability of scanned conventional impressions of prepared teeth generated with white- and blue-light scanners. , 2015, The Journal of prosthetic dentistry.
[11] Suk-Ho Kang,et al. Flexural strength and microstructure of two lithium disilicate glass ceramics for CAD/CAM restoration in the dental clinic , 2013, Restorative dentistry & endodontics.
[12] Malgorzata Roos,et al. Polyetheretherketone-a suitable material for fixed dental prostheses? , 2013, Journal of biomedical materials research. Part B, Applied biomaterials.
[13] C. Rüssel,et al. Nucleation and growth kinetics and phase analysis in zirconia-containing lithium disilicate glass , 2015, Journal of Materials Science.
[14] Heike Rudolph,et al. Computer-aided analysis of the influence of digitizing and surfacing on the accuracy in dental CAD/CAM technology , 2007, Comput. Biol. Medicine.
[15] Jin-Hun Jeon,et al. Accuracy of complete-arch model using an intraoral video scanner: An in vitro study. , 2016, The Journal of prosthetic dentistry.
[16] D. Chung,et al. Three-dimensional assessment of upper lip positional changes according to simulated maxillary anterior tooth movements by white light scanning , 2014, Korean journal of orthodontics.
[17] Tiegen Liu,et al. Measurement of the refractive index of human teeth by optical coherence tomography. , 2009, Journal of biomedical optics.
[18] Geoffrey A Thompson,et al. Effect of CNC-milling on the marginal and internal fit of dental ceramics: a pilot study. , 2013, Dental materials : official publication of the Academy of Dental Materials.
[19] Markus B Blatz,et al. Precision of fit of implant-supported screw-retained 10-unit computer-aided-designed and computer-aided-manufactured frameworks made from zirconium dioxide and titanium: an in vitro study. , 2014, Clinical oral implants research.
[20] Albert Mehl,et al. A 3-dimensional accuracy analysis of chairside CAD/CAM milling processes. , 2014, The Journal of prosthetic dentistry.
[21] J Dejou,et al. Clinical evaluation of the marginal fit of cast crowns--validation of the silicone replica method. , 2007, Journal of oral rehabilitation.
[22] Ece Tamac,et al. Clinical marginal and internal adaptation of CAD/CAM milling, laser sintering, and cast metal ceramic crowns. , 2014, The Journal of prosthetic dentistry.
[23] Evan D Tetelman,et al. A New Transitional Abutment for Immediate Aesthetics and Function , 2008, Implant dentistry.
[24] Karla Zancopé,et al. Micro-computed tomography evaluation of marginal fit of lithium disilicate crowns fabricated by using chairside CAD/CAM systems or the heat-pressing technique. , 2014, The Journal of prosthetic dentistry.
[25] Hae-Young Kim,et al. Three-dimensional analysis of marginal and internal fit of copings fabricated with polyetherketoneketone (PEKK) and zirconia. , 2017, Journal of prosthodontic research.
[26] Ji-Hwan Kim,et al. In vitro assessment of the marginal and internal fits of interim implant restorations fabricated with different methods. , 2016, The Journal of prosthetic dentistry.
[27] José Manuel Arroyo-Osorio,et al. The manufacture of a maxillofacial prosthesis from an axial tomography using simulation technologies with a virtual machine tool and four-axis machining , 2016 .
[28] Yu Zhang,et al. Marginal and internal fit of heat pressed versus CAD/CAM fabricated all-ceramic onlays after exposure to thermo-mechanical fatigue. , 2014, Journal of dentistry.
[29] S. Freitag-Wolf,et al. Resin bonding to three types of polyaryletherketones (PAEKs)-durability and influence of surface conditioning. , 2014, Dental materials : official publication of the Academy of Dental Materials.
[30] R. Nedelcu,et al. Scanning accuracy and precision in 4 intraoral scanners: an in vitro comparison based on 3-dimensional analysis. , 2014, The Journal of prosthetic dentistry.
[31] Hyun-Pil Lim,et al. Evaluation of marginal fit of 2 CAD-CAM anatomic contour zirconia crown systems and lithium disilicate glass-ceramic crown , 2015, The journal of advanced prosthodontics.
[32] Hideo Matsumura,et al. Current status of zirconia-based fixed restorations. , 2010, Journal of oral science.
[33] R Luthardt,et al. Design and production of dental prosthetic restorations: basic research on dental CAD/CAM technology. , 2002, International journal of computerized dentistry.
[34] In-Sung Yeo,et al. Marginal fit of anterior 3-unit fixed partial zirconia restorations using different CAD/CAM systems , 2013, The journal of advanced prosthodontics.
[35] F. Beuer,et al. Digital dentistry: an overview of recent developments for CAD/CAM generated restorations , 2008, BDJ.
[36] Yasemin Kulak Özkan,et al. Comparison of marginal and internal fit of press-on-metal and conventional ceramic systems for three- and four-unit implant-supported partial fixed dental prostheses: An in vitro study. , 2015, The Journal of prosthetic dentistry.
[37] Per Vult von Steyern,et al. The fit of cobalt-chromium three-unit fixed dental prostheses fabricated with four different techniques: a comparative in vitro study. , 2011, Dental materials : official publication of the Academy of Dental Materials.
[38] F Lutz,et al. [Optimization of the powder application in the Cerec method with environment-friendly propellant systems]. , 1990, Schweizer Monatsschrift fur Zahnmedizin = Revue mensuelle suisse d'odonto-stomatologie = Rivista mensile svizzera di odontologia e stomatologia.
[39] J. Güth,et al. Light transmittance by a multi-coloured zirconia material. , 2015, Dental materials journal.
[40] G. Sandborgh-Englund,et al. Computer aided analysis of digitized dental stone replicas by dental CAD/CAM technology. , 2008, Dental materials : official publication of the Academy of Dental Materials.
[41] Hesham A. Ezzat,et al. Accuracy of ceramic restorations made with two CAD/CAM systems. , 2013, The Journal of prosthetic dentistry.
[42] J. Mclean,et al. The estimation of cement film thickness by an in vivo technique , 1971, British Dental Journal.
[43] S. Kurtz,et al. PEEK biomaterials in trauma, orthopedic, and spinal implants. , 2007, Biomaterials.
[44] Mohammed Bennamoun,et al. Trends in Computer-Aided Manufacturing in Prosthodontics: A Review of the Available Streams , 2014, International journal of dentistry.
[45] H. F. Mark,et al. Encyclopedia of polymer science & technology, concise , 2007 .
[46] D. Edelhoff,et al. Marginal and internal fit of four-unit zirconia fixed dental prostheses based on digital and conventional impression techniques , 2013, Clinical Oral Investigations.
[47] Woong-Chul Kim,et al. Comparison of prosthetic models produced by traditional and additive manufacturing methods , 2015, The journal of advanced prosthodontics.
[48] C. Piconi,et al. Zirconia as a ceramic biomaterial. , 1999, Biomaterials.
[49] Erkut Kahramanoğlu,et al. Marginal and internal adaptation of different superstructure and abutment materials using two different implant systems for five-unit implant-supported fixed partial dentures: an in vitro study. , 2013, The International journal of oral & maxillofacial implants.