Schulz AC, Othman A, Ströbele DA, Wagner J, Mosch R, von See C. Fracture strength test of digitally produced ceramic-filled and unfilled dental resin restorations via 3d printing: An in vitro study. J Clin Exp Dent. 2023;15(2):e118-24.

 

doi:10.4317/jced.60173

https://doi.org/10.4317/jced.60173

__________

 

References

1. Hatch JP, Shinkai RS, Sakai S, Rugh JD, Paunovich ED. Determinants of masticatory performance in dentate adults. Arch Oral Biol. 2001;46:641-8.
https://doi.org/10.1016/S0003-9969(01)00023-1
PMid:11369319

 

2. Kuoppala R, Napankangas R, Raustia A. Quality of Life of Patients Treated With Implant-Supported Mandibular Overdentures Evaluated With the Oral Health Impact Profile (OHIP-14): a Survey of 58 Patients. J Oral Maxillofac Res. 2013;4:4.
https://doi.org/10.5037/jomr.2013.4204
PMid:24422032 PMCid:PMC3886109

 

3. Padmanabhan S, Reddy VA. Inter-disciplinary management of a patient with severely attrited teeth. J Indian Soc Periodontol. 2010;14:190-4.
https://doi.org/10.4103/0972-124X.75916
PMid:21760675 PMCid:PMC3100864

 

4. Schönhammer K. Provisorische Kronen- und Brückenmaterialien auf Implantaten - In vitro-Verschleiß- sowie Bruchfestigkeitsuntersuchung an standardisierten Probekörpern. Dissertation, Universität Regensburg, Germany, 31 October 2016.

 

5. Gernet W, Biffar R, Beuer F. Zahnärztliche Prothetik. 3rd ed. Stuttgart: Thieme; 2007. p. 48-50.

 

6. Eichner K. Messung der Kräfte bei Kauvorgängen. Dtsch Zahnärztl Z. 1963;18:915-924.

 

7. Rosenstiel SF, Land MF, Fujimoto J. Contemporary Fixed Prosthodontics. 5th ed. St. Louis: Mosby; 2016. p. 235-260.

 

8. Käyser AF, Creugers NH, Plasmans PJ, Postema N, Snoek PA. Die Provisorische Versorgung. In: Käyser AF, Creugers NH, Plasmans PJ, Postema N, Snoek PA: Kronen- und Brückenprothetik. Behandlungsplanung, Indikation, Ausführung, Langzeitbewährung. Köln: Deutscher Ärzte-Verlag; 1997. p. 159-172.

 

9. Strub JR, Türp JC, Witkowski S, Hürzeler MB, Kern M. Artikulatoren, Ästhetik, Werkstoffkunde, festsitzende Prothetik. Curriculum Prothetik Band II. 3rd ed. Berlin: Quintessenz Verlag; 2005. p. 405-427.

 

10. Godoy Sentíes A, Valenzula Soo JA, Natile G, Presicci F. Vollzirkuläre Brücke aus Prettau Zirkon und Kronen aus Prettau Anterior. Quintessenz der Zahntechnik. 2018;44:306-318.

 

11. Strub JR, Kern M, Türp JC, Witkowski S, Heydecke G, Wolfart S. Kombinierte und abnehmbare Prothetik, Implantologie, Nachsorge, Lebensqualität. Curriculum Prothetik Band III. 4th ed. Berlin: Quintessenz Verlag; 2011. p. 923-1070

 

12. Anusavice KJ, Shen C, Rawls HR. Phillips' Science of Dental Materials. 12th ed. Philadelphia: Saunders; 2013. p. 418-474.

 

13. Rammelsberg P, Meyer A, Lorenzo-Bermejo J, Kappel S, Zenthöfer A. Long-term chipping and failure rates of implant-supported and combined tooth-implant-supported metal-ceramic and ceramic fixed dental prostheses: A cohort study. J Prosthet Dent. 2021;126:196-203.
https://doi.org/10.1016/j.prosdent.2020.05.020
PMid:32800577

 

14. Stawarczyk B, Özcan M, Trottmann A, Schmutz F, Roos M, Hämmerle C. Two-body wear rate of CAD/CAM resin blocks and their enamel antagonists. J Prosthet Dent. 2013;109:325-32.
https://doi.org/10.1016/S0022-3913(13)60309-1
PMid:23684283

 

15. Schweiger J, Beuer F. High-performance plastics for CAD/CAM production. Digital Dental News. 2008;2:12-19.

 

16. Bayne S, Heymann H. CAD/CAM in dentistry: Present and future applications. Quintessence Int. 1996;27:431-433.

 

17. Beuer F, Schweiger J, Edelhoff D. Digital dentistry: An overview of recent developments for CAD/CAM generated restorations. Br Dent J. 2008;204:505-511.
https://doi.org/10.1038/sj.bdj.2008.350
PMid:18469768

 

18. Baroudi K, Ibraheem SN. Assessment of Chair-side Computer-Aided Design and Computer-Aided Manufacturing Restorations: A Review of the Literature. Journal of international oral health. 2015;7:96-104.

PMid:25954082 PMCid:PMC4409808

 

19. Alqahtani F. Marginal fit of all-ceramic crowns fabricated using two extraoral CAD/CAM systems in comparison with the conventional technique. Clin Cosmet Investig Dent. 2017;9:13-18.
https://doi.org/10.2147/CCIDE.S130856
PMid:28352204 PMCid:PMC5358961

 

20. Stona D, Burnett LH, Mota EG, Spohr AM. Fracture resistance of computer-aided design and computer-aided manufacturing ceramic crowns cemented on solid abutments. J Am Dent Assoc. 2015;146:501-507.
https://doi.org/10.1016/j.adaj.2015.02.012
PMid:26113098

 

21. Strub JR, Rekow ED, Witkowski S. Computer-aided design and fabrication of dental restorations: Current systems and future possibilities. J Am Dent Assoc. 2006;137:1289-1296.
https://doi.org/10.14219/jada.archive.2006.0389
PMid:16946436

 

22. Huang H. Machining characteristics and surface integrity of yttria stabilized tetragonal zirconia in high speed deep grinding. J Mater Sci Eng A. 2003;345:155-163.
https://doi.org/10.1016/S0921-5093(02)00466-5

 

23. Hoang LN, Thompson GA, Cho SH, Berzins DW, Ahn KW. Die spacer thickness reproduction for central incisor crown fabrication with combined computer-aided design and 3D printing technology: An in vitro study. J Prosthet Dent. 2015;113:398-404.
https://doi.org/10.1016/j.prosdent.2014.11.004
PMid:25794915

 

24. Dehurtevent M, Robberecht L, Hornez JC, Thuault A, Deveaux E, Behin P. Stereolithography: A new method for processing dental ceramics by additive computer-aided manufacturing. Dent Mater. 2017;33:477-485.
https://doi.org/10.1016/j.dental.2017.01.018
PMid:28318544

 

25. Abduo J, Lyons K, Bennamoun M. Trends in computer-aided manufacturing in prosthodontics: a review of the available streams. Int J Dent. 2014;2014:783948.
https://doi.org/10.1155/2014/783948
PMid:24817888 PMCid:PMC4000974

 

26. Van Noort R. The future of dental devices is digital. Dent Mater. 2012;28:3-12.
https://doi.org/10.1016/j.dental.2011.10.014
PMid:22119539

 

27. Zandinejad A, Lin WS, Morton D. Method for Fabricating Dental Restorations. U.S. Patent 10716648 B2, 21 July 2020. Stansbury JW, Idacavage MJ. 3D printing with polymers: Challenges among expanding options and opportunities. Dent Mater. 2016;32:54-64.
https://doi.org/10.1016/j.dental.2015.09.018
PMid:26494268

 

28. Dawood A, Marti BM, Sauret-Jackson V, Darwood A. 3D printing in dentistry. Br Dent J. 2015;219:521-529.
https://doi.org/10.1038/sj.bdj.2015.914
PMid:26657435

 

29. Bhargav A, Sanjairaj V, Rosa V, Feng LW, Yh JF. Applications of additive manufacturing in dentistry: A review. J Biomed Mater Res Part B Appl Biomater. 2018;106:2058-2064.
https://doi.org/10.1002/jbm.b.33961
PMid:28736923

 

30. Methani MM, Revilla-León M, Zandinejad A. The potential of additive manufacturing technologies and their processing parameters for the fabrication of all-ceramic crowns: A review. J Esthet Restor Dent. 2020;32:182-192.
https://doi.org/10.1111/jerd.12535
PMid:31701629

 

31. Stansbury JW, Idacavage MJ. 3D printing with polymers: Challenges among expanding options and opportunities. Dent Mater. 2016;32:54-64.
https://doi.org/10.1016/j.dental.2015.09.018
PMid:26494268

 

32. Wang X, Jiang M, Zhou Z, Gou J, Hui D. 3D printing of polymer matrix composites: A review and prospective. Compos Part B Eng. 2017;110:442-458.
https://doi.org/10.1016/j.compositesb.2016.11.034

 

33. Osman RB, Alharbi N, Wismeijer D. Build angle: Does it influence the accuracy of 3D-printed dental restorations using digital light-processing technology? Int J Prosthodont. 2017;30:182-188.
https://doi.org/10.11607/ijp.5117
PMid:28267830

 

34. Wu GH, Hsu S-H. polymeric-based 3D printing for tissue engineering. J Med Biol Eng. 2015;35:285-292.
https://doi.org/10.1007/s40846-015-0038-3
PMid:26167139 PMCid:PMC4491116

 

35. Priest G. Esthetic potential of single-implant provisional restorations: selection criteria of available alternatives. J Esthet Restor Dent. 2006;18:326-38.
https://doi.org/10.1111/j.1708-8240.2006.00044.x
PMid:17083437

 

36. Faul F, Erdfelder E, Buchner A, Lang A-G. Statistical power analyses using G*Power 3.1: Tests for correlation and regression analyses.Behavior Research Methods. 2009;41:1149-1160.
https://doi.org/10.3758/BRM.41.4.1149
PMid:19897823

 

37. Serdar CC, Cihan M, Yücel D, Serdar MA. Sample size, power and effect size revisited: simplified and practical approaches in pre-clinical, clinical and laboratory studies. Biochem Med (Zagreb). 2021;31:010502.
https://doi.org/10.11613/BM.2021.010502
PMid:33380887 PMCid:PMC7745163

 

38. Aati S, Akram Z, Ngo H, Fawzy AS. Development of 3D printed resin reinforced with modified ZrO2 nanoparticles for long-term provisional dental restorations. Dental Materials. 2021;37:e360-e374.
https://doi.org/10.1016/j.dental.2021.02.010
PMid:33663884

 

39. Holmer L, Othman A, Lührs AK, von See C. Comparison of the shear bond strength of 3D printed temporary bridges materials, on different types of resin cements and surface treatment. Journal of clinical and experimental dentistry. 2019;11:367-372.
https://doi.org/10.4317/jced.55617
PMid:31110617 PMCid:PMC6522115

 

40. Alevizakos V, Mitov G, Teichert F, von See C. The color stability and wear resistance of provisional implant restorations: A prospective clinical study. Clin Exp Dent Res. 2020;6:568-575.
https://doi.org/10.1002/cre2.311
PMid:32736414 PMCid:PMC7545226

 

41. Suputtamongkol K, Anusavice K J, Suchatlampong C, Sithiamnuai P, Tulapornchai C. Clinical performance and wear characteristics of veneered lithia-disilicate-based ceramic crowns. Dental Materials. 2008;24:667-673.
https://doi.org/10.1016/j.dental.2007.06.033
PMid:17727943 PMCid:PMC2346544

 

42. Jang YS, Nguyen TDT, Ko YH, Lee DW, Baik BJ, Lee MH, Bae TS. In vitro wear behavior between enamel cusp and three aesthetic restorative materials: Zirconia, porcelain, and composite resin. Journal of Advanced Prosthodontics. 2019;11:7-15.
https://doi.org/10.4047/jap.2019.11.1.7
PMid:30847044 PMCid:PMC6400703

 

43. Souza ROA, Ozcan M, Mesquita AMM, De Melo RM, Galhano GAP, Bottino MA, Pavanelli CA. Effect of different polymerization devices on the degree of conversion and the physical properties of an indirect resin composite. Acta Odontol Latinoam. 2010;23:129-135.

PMid:21053686

 

44. Hwangbo N-K, Nam N-E, Choi J-H, Kim J-E. Effects of the Washing Time and Washing Solution on the Biocompatibility and Mechanical Properties of 3D Printed Dental Resin Materials. Polymers. 2021;13:4410.
https://doi.org/10.3390/polym13244410
PMid:34960960 PMCid:PMC8705711

 

45. Jerman E, Eichberger M, Schönhoff L, Reymus M, Stawarczyk B. Breaking Load and Abrasion Resistance 10-year Chewing Simulation based on the scientific study Fracture load and two-body wear of 3D printed and conventionally fabricated crowns: artificial aging of 10 in-vivo years. Department of Prosthetic Dentistry: University Hospital, LMU Munich, Germany. 2020. https://www.bego.com/3d-printing/materials/varseosmile-crown-plus/scientific-studies/. Accessed 14 March 21.

 

46. Albrecht N. Abrasion and Surface Roughness 5-year Toothbrushing Simulation of VarseoSmile Crown plus. SD Mechatronik GmbH, Germany. 2020. https://www.bego.com/3d-printing/materials/varseosmile-crown-plus/scientific-studies/. Accessed 14 March 21.

 

47. Güth JF, Schweiger J, Erdelt KJ. Long-term Cementation Stability, Decementation Behavior and Marginal Gap Formation 5-year Chewing Simulation. Polyclinic for Dental Prosthetics, Medical Center of the University of Munich, Germany. 2020. https://www.bego.com/3d-printing/materials/varseosmile-crown-plus/scientific-studies/. Accessed 14 March 21.

 

48. Comba A, Manzon E, Giuliano C, Farina E, Pasqualini D, Michelotto Tempesta R, et al. Influence of surface coating sealer on resin composite water absorption and discoloration: An in vitro study. Am J Dent. 2018;31:24-28.

 

49. McCabe J.F, Rusby S. Water absorption, dimensional change and radial pressure in resin matrix dental restorative materials. Biomaterials. 2004;25:4001-7.
https://doi.org/10.1016/j.biomaterials.2003.10.088
PMid:15046890

 

50. Fallschüssel G. Skriptum der zahnärztlichen Werkstoffkunde mit Grundbegriffen der Prothetik, 3rd ed. Karlsruhe: Berenz; 1981; p. 80-110.

 

51. Della Bona A, Corazza PH, Zhang Y. Characterization of a polymer-infiltrated ceramic-network material. Dent Mater. 2014;30:564-569.
https://doi.org/10.1016/j.dental.2014.02.019
PMid:24656471 PMCid:PMC4651623

 

52. Cristofolini L, Viceconti M. Mechanical validation of whole bone composite tibia models. J Biomech. 2000;33:279-88.
https://doi.org/10.1016/S0021-9290(99)00186-4
PMid:10673111

 

53. Hetaimish BM. Sawbones laboratory in orthopedic surgical training. Saudi Med J. 2016;37:348-53.
https://doi.org/10.15537/smj.2016.4.13575
PMid:27052276 PMCid:PMC4852011