Comparison of marginal and internal fit of 5-unit zirconia fixed dental prostheses fabricated with CAD/CAM technology using direct and indirect digital scans

Journal of Dental Sciences - Tập 17 - Trang 63-69 - 2022
Irem Gokce Uluc1, Mustafa Baris Guncu1, Guliz Aktas1, Ilser Turkyilmaz2
1Department of Prosthodontics, School of Dentistry, Hacettepe University, Ankara, Turkey
2New York University College of Dentistry, Department of Prosthodontics, New York, NY, USA

Tài liệu tham khảo

Zhivago, 2021, A comprehensive digital approach to enhance smiles using an intraoral optical scanner and advanced 3-D sculpting software, J Dent Sci, 16, 784, 10.1016/j.jds.2020.05.010 Turkyilmaz, 2019, Full-mouth rehabilitation of an elderly patient with Sjogren's syndrome by using implant-supported fixed dental prostheses including CAD/CAM frameworks, J Dent Sci, 14, 428, 10.1016/j.jds.2019.06.004 Turkyilmaz, 2020, Guest commentary: the battle of file formats from intraoral optical scanners, Int J Prosthodont (IJP), 33, 369, 10.11607/ijp.2020.4.gc Guth, 2013, Accuracy of digital models obtained by direct and indirect data capturing, Clin Oral Invest, 17, 1201, 10.1007/s00784-012-0795-0 Su, 2015, Intraoral digital impression technique: a review, J Prosthodont, 24, 313, 10.1111/jopr.12218 Osnes, 2020, Full arch precision of six intraoral scanners in vitro, J Prosthodont Res, 64, 6, 10.1016/j.jpor.2019.05.005 Richert, 2017, Intraoral scanner technologies: a review to make a successful impression, J Healthc Eng, 2017, 8427595, 10.1155/2017/8427595 Bosniac, 2019, Comparison of an indirect impression scanning system and two direct intraoral scanning systems in vivo, Clin Oral Invest, 23, 2421, 10.1007/s00784-018-2679-4 Pradies, 2015, Clinical evaluation comparing the fit of all-ceramic crowns obtained from silicone and digital intraoral impressions based on wavefront sampling technology, J Dent, 43, 201, 10.1016/j.jdent.2014.12.007 Kim, 2020, Effect of digital scans on marginal and internal discrepancies of zirconia crowns, J Prosthet Dent, 124, 461, 10.1016/j.prosdent.2019.09.027 Carrilho Baltazar Vaz, 2020, Marginal fit of zirconia copings fabricated after conventional impression making and digital scanning: an in vitro study, J Prosthet Dent, 124, 223, 10.1016/j.prosdent.2020.02.011 Su, 2016, Comparison of marginal and internal fit of 3-unit ceramic fixed dental prostheses made with either a conventional or digital impression, J Prosthet Dent, 116, 362, 10.1016/j.prosdent.2016.01.018 Benic, 2019, Randomized controlled clinical trial of digital and conventional workflows for the fabrication of zirconia-ceramic fixed partial dentures. Part III: marginal and internal fit, J Prosthet Dent, 121, 426, 10.1016/j.prosdent.2018.05.014 Ahrberg, 2016, Evaluation of fit and efficiency of CAD/CAM fabricated all-ceramic restorations based on direct and indirect digitalization: a double-blinded, randomized clinical trial, Clin Oral Invest, 20, 291, 10.1007/s00784-015-1504-6 Arezoobakhsh, 2020, Comparison of marginal and internal fit of 3-unit zirconia frameworks fabricated with CAD-CAM technology using direct and indirect digital scans, J Prosthet Dent, 123, 105, 10.1016/j.prosdent.2018.10.023 Ender, 2016, In vivo precision of conventional and digital methods for obtaining quadrant dental impressions, Clin Oral Invest, 20, 1495, 10.1007/s00784-015-1641-y Ender, 2016, In vivo precision of conventional and digital methods of obtaining complete-arch dental impressions, J Prosthet Dent, 115, 313, 10.1016/j.prosdent.2015.09.011 Su, 2015, Comparison of repeatability between intraoral digital scanner and extraoral digital scanner: an in-vitro study, J Prosthodont Res, 59, 236, 10.1016/j.jpor.2015.06.002 Malik, 2018, Comparison of accuracy between a conventional and two digital intraoral impression techniques, Int J Prosthodont (IJP), 31, 107, 10.11607/ijp.5643 Alfaro, 2015, Assessment of the internal fit of lithium disilicate crowns using micro-CT, J Prosthodont, 24, 381, 10.1111/jopr.12274 Rodiger, 2017, Fitting accuracy of zirconia single crowns produced via digital and conventional impressions-a clinical comparative study, Clin Oral Invest, 21, 579, 10.1007/s00784-016-1924-y Tsirogiannis, 2016, Evaluation of the marginal fit of single-unit, complete-coverage ceramic restorations fabricated after digital and conventional impressions: a systematic review and meta-analysis, J Prosthet Dent, 116, 328, 10.1016/j.prosdent.2016.01.028 Kim, 2016, Fit of lithium disilicate crowns fabricated from conventional and digital impressions assessed with micro-CT, J Prosthet Dent, 116, 551, 10.1016/j.prosdent.2016.03.028 Luthardt, 2004, An innovative method for evaluation of the 3-D internal fit of CAD/CAM crowns fabricated after direct optical versus indirect laser scan digitizing, Int J Prosthodont (IJP), 17, 680 Moldovan, 2011, Three-dimensional fit of CAD/CAM-made zirconia copings, Dent Mater, 27, 1273, 10.1016/j.dental.2011.09.006 Kim, 2014, Three-dimensional evaluation of gaps associated with fixed dental prostheses fabricated with new technologies, J Prosthet Dent, 112, 1432, 10.1016/j.prosdent.2014.07.002 Mously, 2014, Marginal and internal adaptation of ceramic crown restorations fabricated with CAD/CAM technology and the heat-press technique, J Prosthet Dent, 112, 249, 10.1016/j.prosdent.2014.03.017 Kim, 2018, Effect of number of pontics and impression technique on the accuracy of four-unit monolithic zirconia fixed dental prostheses, J Prosthet Dent, 119, 860, 10.1016/j.prosdent.2017.10.005 Berrendero, 2016, Influence of conventional and digital intraoral impressions on the fit of CAD/CAM-fabricated all-ceramic crowns, Clin Oral Invest, 20, 2403, 10.1007/s00784-016-1714-6 Almeida e Silva, 2014, Marginal and internal fit of four-unit zirconia fixed dental prostheses based on digital and conventional impression techniques, Clin Oral Invest, 18, 515, 10.1007/s00784-013-0987-2