Digital workflow in the planning and execution of aesthetic oral rehabilitation: A literature review

Authors

DOI:

https://doi.org/10.33448/rsd-v10i6.16165

Keywords:

CAD/CAM; Dental technology; Dental esthetics; Dentistry; Software.

Abstract

Digital dentistry allows rehabilitation treatments to be carried out virtually. The dentist must choose the way of working, when inserting or not the digital workflow in the dental routine, seeking the most appropriate treatment for his patient. The aim of this study was to review the literature on the workdigital flow in the planning and execution of aesthetic oral rehabilitation. The search for the articles was carried out in the LILACS, Pubmed, Scopus and Google Scholar databases, using the keywords “Digital dentistry” “CAD/CAM” and “Esthetic”. English, Portuguese or Spanish studies, published between 01/2010 and 04/2021, were considered eligible. Advances in digital workflow enable treatment relatively quickly and more conveniently for the dentists, in addition to offering greater comfort to the patient. The technology offers numerous possibilities for prosthetic work, with properties similar to or superior to conventional procedures. Although it is expensive and requires training to use the system, the equipment has become less costly and more versatile, facilitating the work of the professional. Thus, with all in-office processing, from scanning to milling or 3D printing, it became possible to perform the entire restorative procedure in a single session. Thus, it is interesting to insert digital dentistry into the dental office, as it provides superior results to analogical dentistry.

 

References

Abdullah, A. O., Tsitrou, E. A., & Pollington, S. (2016). Comparative in vitro evaluation of CAD/CAM vs conventional provisional crowns. Journal of applied oral science, 24(3), 258–263.

Abduo, J., & Elseyoufi, M. (2018). Accuracy of Intraoral Scanners: A Systematic Review of Influencing Factors. The European Journal of Prosthodontics and Restorative Dentistry, 26(3), 101–121.

Ahlholm, P., Sipilä, K., Vallittu, P., Jakonen, M., & Kotiranta, U. (2018). Digital Versus Conventional Impressions in Fixed Prosthodontics: A Review. Journal of Prosthodontics, 27(1), 35–41.

Amornvit, P., Sanohkan, S., & Peampring, C. (2020). Studying the Optical 3D Accuracy of Intraoral Scans: An In Vitro Study. Journal of Healthcare Engineering, 2020, 5739312.

Baheti, M. J., Soni, U. N., Gharat, N. V., Mahagaonkar, P., Khokhani, R., & Dash, S. (2015). Intra-oral scanners: A new eye in dentistry. Austin Journal of Orthopedics & Rheumatology, 2(3), 1023.

Berrendero, S., Salido, M. P., Valverde, A., Ferreiroa, A., & Pradíes, G. (2016). Influence of conventional and digital intraoral impressions on the fit of CAD/CAM-fabricated all-ceramic crowns. Clinical Oral Investigations, 20(9), 2403–2410.

Blatz, M. B., & Conejo, J. (2019). The Current State of Chairside Digital Dentistry and Materials. Dental Clinics of North America, 63(2), 175–197.

Bósio, J. A., Santo, M. D., & Jacob, H. B. (2017). Odontologia digital contemporânea – scanners intraorais digitais. Ortho Science: Orthodontic Science and Practice, 10(39), 355-362.

Cardoso, F. L., Alberfaro, K. P. A., Ribeiro, S., Assis, V. K. S., & Reis, L. O. R. (2018). Moldagem digital em odontologia: perspectivas frente à convencional: uma revisão de literatura. Anais do Seminário Científico do UNIFACIG, 4(4), 1-6.

Cheng, C. W., Ye, S. Y., Chien, C. H., Chen, C. J., Papaspyridakos, P., & Ko, C. C. (2021). Randomized clinical trial of a conventional and a digital workflow for the fabrication of interim crowns: An evaluation of treatment efficiency, fit, and the effect of clinician experience. The Journal of Prosthetic Dentistry, 125(1), 73–81.

Chiu, A., Chen, Y. W., Hayashi, J., & Sadr, A. (2020). Accuracy of CAD/CAM Digital Impressions with Different Intraoral Scanner Parameters. Sensors (Basel, Switzerland), 20(4), 1157.

Chochlidakis, K. M., Papaspyridakos, P., Geminiani, A., Chen, C. J., Feng, I. J., & Ercoli, C. (2016). Digital versus conventional impressions for fixed prosthodontics: A systematic review and meta-analysis. The Journal of Prosthetic Dentistry, 116(2), 184–190.e12.

Cristian, C., & José. P. A. A. (2019). Chairside digital workflow in restorative dentistry. Biomedical Journal of Scientific & Technical Research, 13(4), 10111-10113.

Davidovich, E., Dagon, S., Tamari, I., Etinger, M., & Mijiritsky, E. (2020). An Innovative Treatment Approach Using Digital Workflow and CAD-CAM Part 2: The Restoration of Molar Incisor Hypomineralization in Children. International Journal of Environmental Research and Public Health, 17(5), 1499.

Davidovich, E., Shay, B., Nuni, E., & Mijiritsky, E. (2020). An Innovative Treatment Approach Using Digital Workflow and CAD-CAM Part 1: The Restoration of Endodontically Treated Molars in Children. International Journal of Environmental Research and Public Health, 17(4), 1364.

Dawood, A., Marti Marti, B., Sauret-Jackson, V., & Darwood, A. (2015). 3D printing in dentistry. British Dental Journal, 219(11), 521–529.

De Angelis, P., Passarelli, P. C., Gasparini, G., Boniello, R., D'Amato, G., & De Angelis, S. (2020). Monolithic CAD-CAM lithium disilicate versus monolithic CAD-CAM zirconia for single implant-supported posterior crowns using a digital workflow: A 3-year cross-sectional retrospective study. The Journal of Prosthetic Dentistry, 123(2), 252–256.

Delize, V., Bouhy, A., Lambert, F., & Lamy, M. (2019). Intrasubject comparison of digital vs. conventional workflow for screw-retained single-implant crowns: Prosthodontic and patient-centered outcomes. Clinical Oral Implants Research, 30(9), 892–902.

Duqum, I. S., Brenes, C., Mendonca, G., Carneiro, T., & Cooper, L. F. (2019). Marginal Fit Evaluation of CAD/CAM All Ceramic Crowns Obtained by Two Digital Workflows: An In Vitro Study Using Micro-CT Technology. Journal of Prosthodontics, 28(9), 1037–1043.

Erozan, Ç., & Ozan, O. (2020). Evaluation of the Precision of Different Intraoral Scanner-Computer Aided Design (CAD) Software Combinations in Digital Dentistry. Medical Science Monitor: International Medical Journal of Experimental and Clinical Research, 26, e918529.

Espíndola-Castro, L. F., Ortigoza, L. S., & Monteiro, G. Q. M. (2019). Escaneamento digital e prototipagem 3D para confecção de laminados cerâmicos: relato de caso clínico. Revista Ciência Plural, 5(1), 113-123,

Esquivel, J., Villarroel, M., Tran, D., Kee, E., & Bruggers, K. (2020). The utilization of snap-on provisionals for dental veneers: From an analog to a digital approach. Journal of Esthetic and Restorative Dentistry, 32(2), 161–170.

Estrela, C. (2018). Metodologia Científica: Ciência, Ensino, Pesquisa. Editora Artes Médicas.

García-Martínez, I., Monllor, D. C., Solaberrieta, E., Ferreiroa, A., & Pradíes, G. (2021). Accuracy of digitization obtained from scannable and nonscannable elastomeric impression materials. The Journal of Prosthetic Dentistry, 125(2), 300–306.

Geng, J. (2011). Structured-light 3D surface imaging: A tutorial. Advances in Optics and Photonics, 3(2), 128-160.

Gjelvold, B., Chrcanovic, B. R., Korduner, E. K., Collin-Bagewitz, I., & Kisch, J. (2016). Intraoral Digital Impression Technique Compared to Conventional Impression Technique. A Randomized Clinical Trial. Journal of Prosthodontics, 25(4), 282–287.

Kessler, A., Hickel, R., & Reymus, M. (2020). 3D Printing in Dentistry-State of the Art. Operative dentistry, 45(1), 30–40.

Koulivand, S., Ghodsi, S., Siadat, H., & Alikhasi, M. (2020). A clinical comparison of digital and conventional impression techniques regarding finish line locations and impression time. Journal of Esthetic and Restorative, 32(2), 236–243.

Libonati, A., Di Taranto, V., Gallusi, G., Montemurro, E., & Campanella, V. (2020). CAD/CAM Customized Glass Fiber Post and Core With Digital Intraoral Impression: A Case Report. Clinical, Cosmetic and Investigational Dentistry, 12, 17–24.

Ludke, M. & Andre, M. E. D. A. (2013). Pesquisas em educação: uma abordagem qualitativa. São Paulo: E.P.U.

Marcel, R., Reinhard, H., & Andreas, K. (2020). Accuracy of CAD/CAM-fabricated bite splints: milling vs 3D printing. Clinical Oral Investigations, 24(12), 4607-4615.

Nikoyan, L., & Patel, R. (2020). Intraoral Scanner, Three-Dimensional Imaging, and Three-Dimensional Printing in the Dental Office. Dental Clinics of North America, 64(2), 365-378.

Park, S. H., Piedra-Cascón, W., Zandinejad, A., & Revilla-León, M. (2020). Digitally Created 3-Piece Additive Manufactured Index for Direct Esthetic Treatment. Journal of Prosthodontics, 29(5), 436–442.

Sivaramakrishnan, G., Alsobaiei, M., & Sridharan, K. (2020). Patient preference and operating time for digital versus conventional impressions: a network meta-analysis. Australian Dental Journal, 65(1), 58–69.

Sotto-Maior, B. S., Filgueiras, A., Gonçalves Pinto, D., Ferrarez, L. L., de Oliveira, M. F., & Freitas, T. A. de C. (2019). Aplicabilidade clínica dos avanços da tecnologia CAD-CAM em Odontologia. HU Revista, 44(1), 29–34.

Sulaiman T. A. (2020). Materials in digital dentistry-A review. Journal of Esthetic and Restorative Dentistry, 32(2), 171–181.

Wismeijer, D., Mans, R., van Genuchten, M., & Reijers, H. A. (2014). Patients' preferences when comparing analogue implant impressions using a polyether impression material versus digital impressions (Intraoral Scan) of dental implants. Clinical Oral Implants Research, 25(10), 1113–1118.

Zavanelli, A. C., Alexandre, R. S., Bordignon, L. S., Silva, A. O., Santos Neto, O. M., & Mazaro, J. V. Q. (2019). Reconstrução estética anterior baseada no planejamento digital do sorriso. Revista Odontológica de Araçatuba, 40(2), 9-14.

Zhang, Q. Q., Chen, X., Zhao, Y. W., Liu, C. X., Luo, T., Dong, B., Yu, H. Y. (2018). Application of 3D printing in aesthetic oral rehabilitation. Hua Xi Kou Qiang Yi Xue Za Zhi, 36(6), 656-661.

Published

09/06/2021

How to Cite

MOREIRA, R. H. .; MANNA, M. P. N. C.; MEDEIROS, Y. de L.; FARIA, L. V.; NEVES, V. de A. M.; PUCETTI, M. G.; ASSIS, A. F. de O.; MOREIRA, L. A. C.; PAZINATTO, R. B. Digital workflow in the planning and execution of aesthetic oral rehabilitation: A literature review. Research, Society and Development, [S. l.], v. 10, n. 6, p. e54810616165, 2021. DOI: 10.33448/rsd-v10i6.16165. Disponível em: https://rsdjournal.org/index.php/rsd/article/view/16165. Acesso em: 16 apr. 2024.

Issue

Section

Health Sciences