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Evaluation of the tensile properties of polished and unpolished 3D SLA- and DLP-Printed specimens used for surgical guides fabrication. Cover

Evaluation of the tensile properties of polished and unpolished 3D SLA- and DLP-Printed specimens used for surgical guides fabrication.

Open Access
|Jun 2023

References

  1. Mendes JA, Miguel T, Ettore do Valle SF. Immediate orthodontic load on dental implants: an option for adult treatment. Dental Press Journal of Orthodontics. 2019. doi:org/10.1590/2177-6709.24.6.069-079.bbo
  2. Graber TM, Vanarsdall RL.Orthodontics. Current principles and techniques. Missouri: Mosby, Inc.; 2000. P.1005-1010.
  3. Chung KR, Kim SH, Kook YA. C-Orthodontic microimplant as a unique skeletal anchorage. J Clin Orthod. 2004; 38:478-86.
  4. Bae M, Kim J, Park C, KimCD, Hwang HJ. Accuracy of miniscrew surgical guides assessed from cone-beam computed tomography and digital models. Am. J. Orthod. Dentofac. Orthop. 2013;143(6): 893-901.
  5. Ligon SC, Liska R, Stampfl J, Gurr M, Mülhaupt R. Polymers for 3D printing and customized additive manufacturing. Chem. Rev. 2017;117:10212–10290.
  6. Egan PF, Shea KA, Ferguson SJ. Simulated tissue growth for 3D printed scaffolds. Biomech. Model. Mechanobiol. 2018;17:1481–1495.
  7. Egan PF. Integrated Design Approaches for 3D Printed Tissue Scaffolds: Review and Outlook. Materials. 2019;2:2355.
  8. Ngo TD, Kashani A, Imbalzano G, Nguyen KT, Hui D. Additive manufacturing (3D printing): A review of materials, methods, applications and challenges. Compos. Part B Eng. 2018;143:172–196.
  9. Ventola CL. Medical applications for 3D printing: Current and projected uses. Pharm. Ther. 2014;39:704.
  10. Liaw CY, Guvendiren M. Current and emerging applications of 3D printing in medicine. Biofabrication. 2017;9:024102.
  11. Jonathan G, Karim A. 3D printing in pharmaceutics: A new tool for designing customized drug delivery systems. Int. J. Pharm. 2016;499:376–394.
  12. Yuan X, Xuan M, Tian W, Long J. Application of digital surgical guides in mandibular resection and reconstruction with fibula flaps. Int J. Oral. Maxillofac. Surg. 2016; 45:1406–1409.
  13. Török G, Gombocz P, Bognár E, et al. Effects of disinfection and sterilization on the dimensional changes and mechanical properties of 3D printed surgical guides for implant therapy—Pilot study. BMC Oral. Health. 2020; 20:19
  14. Lee KY, Cho JW, Chang NY, et al. Accuracy of three-dimensional printing for manufacturing replica teeth. Korean J. Orthod. 2015;45:217–225.
  15. Juneja M, Thakur N, Kumar D, Gupta A, Bajwa B, Jindal P. Accuracy in dental surgical guide fabrication using different 3-D printing techniques. Addit. Manuf. 2018; 22:243–255.
  16. Rutala WA, Gergen MF, Weber Qiu L, et al. Accuracy of orthodontic miniscrew implantation guided by stereolithographic surgical stent based on cone-beam CT-derived 3D images. Angle Orthod. 2012;82(2):284-93.
  17. Mora MA, Chenin DL, Arce RM. Software tools and surgical guides in dental-implant-guided surgery. Dent Clin North Am. 2014;58(3):597-626.
  18. Kim T, Lee S, Kim GB, et al. Accuracy of a simplified 3D-printed implant surgical guide. J. Prosthet. Dent. 2020; 124(2):195-201.
  19. Shaheen E, Alhelwani A, Van De Casteele E, Politis C, Jacobs R. Evaluation of Dimensional Changes of 3D Printed Models After Sterilization: A Pilot Study. Open Dent J. 2018;12(Suppl-1, M3):72–9.
  20. Arefin AME, Khatri NR, Kulkarni N, Egan PF. Polymer 3D Printing Review: Materials, Process, and Design Strategies for Medical Applications. Polymers. 2021;13(9):1499.
  21. Figl M, Weber C, Assadan O, et al. Splint sterilization-a potencial registration hazard in computer-assisted surgery. J Oral Maxillofac Surg. 2012;70:966–71.
  22. Safia S, Prashant N Shoeb SY, Arshad JS, Mohammed AH. Current perspectives of 3d printing in dental applications. Brazilian Dental Science. 2021;24(3):1-9.
  23. Taormina G, Sciancalepore C, Bondioli F, Messori M. Special resins for stereolithography: In situ generation of silver nanoparticles. Polymers. 2018;10(2):212.
  24. Pohlmann AR, Fonseca FN, Paese K, et al. Poly(-caprolactone) microcapsules and nanocapsules in drug delivery. Expert Opin. Drug Deliv. 2013;(10):623–638.
  25. Tofail SAM, Koumoulos EP, Bandyopadhyay A, Bose S, O’Donoghue L, Charitidis C. Additive manufacturing: Scientific and technological challenges, market uptake and opportunities. MaterialsToday. 2018;(21):22–37.
  26. Miedzinska D, Gieleta R, Popławski A. Experimental Study on Influence of Curing Time on Strength Behavior of SLA-Printed Samples Loaded with Different Strain Rates. Materials. 2020;13(24):5825.
  27. Camus D, Thiveaud D, Josseran A. New European medical device regulation: How the French ecosystem should seize the opportunity of the EUDAMED and the UDI system, while overcoming the constraints thereof. Therapies. 2019;(74):73-85.
  28. Choong YYC, Maleksaeedi S, Eng H, Yu S, Wei J, Su PC. High speed 4D printing of shape memory polymers with nanosilica. Appl. MaterialsToday. 2020;18:100515.
  29. Agrawal S, Ray H, Kulat A, et al. Evaluation of tensile property of SLA 3D printed NextDent biocompatible Class I material for making surgical guides for implant surgery, MaterialsToday: Proceedings 2022;(09):288.
  30. Chantarapanich N, Puttawibul P, Sitthiseripratip K, Sucharitpwatskul S, Chantaweroad S. Study of the mechanical properties of photo-cured epoxy resin fabricated by stereolithography, Songklanakarin J. Sci. Technol. 2013; 35(1):91–98.
  31. Mansour S, Gilbert M, Haguec R. A study of the impact of short-term ageing on the mechanical properties of a stereolithography resin, Mater. Sci. Eng. 2007;(447): 277–284.
  32. Kim SY, Shin YS, Jung HD, Hwang CJ, Baik HS, Cha JY. Precision and trueness of dental models manufactured with different 3-dimensional printing techniques. Am. J. Orthod. Dentofac. Orthop. 2018;(153):144–153.
  33. Unkovskiy A, Bui PH, Schille C, Geis-Gerstorfer J, Huettig F, Spintzyk S. Objects build orientation, positioning, and curing influence dimensional accuracy and flexural properties of stereolithographically printed resin. Dent. Mater. 2018;(34): 324–333.
  34. Kokkinis D, Schaffner M, Studart AR. Multimaterial magnetically assisted 3D printing of composite materials. Nat Commun. 2015;(6):8643.
  35. Ober TJ, Foresti D, Lewis JA. Active mixing of complex fluids at the microscale. Proc. Natl. Acad. Sci. USA. 2015;(112):12293–12298.
  36. Wendel B, Rietzel D, Kühnlein F, Feulner R, Hülder G, Schmachtenberg E. Additive Processing of Polymers. Macromol. Mater. Eng. 2008;(293):799–809.
  37. Sodupe-Ortega E, Sanz-Garcia A, Pernia-Espinoza A, Escobedo-Lucea C. Accurate Calibration in Multi-Material 3D Bioprinting for Tissue Engineering. Materials 2018;(11):1402.
  38. Kazemi M, Rahimi AR. Supports effect on tensile strength of the stereolithography parts. Rapid Prototype. J. 2015;(21):79–88.
  39. Qipeng G. Thermosets. Structure, Properties and Applications, 1st Edition. Cambridge: Woodhead Publishing Limited; 2012. P.328.
  40. Takemori MT. Towards an understanding of the heat distortion temperature of thermoplastics. Polym. Eng. Sci. 1979;(19):1104–1109.
  41. Zhang Z, Zhang J, Liu H. High-impact toughness Poly(vinyl chloride)/(α-Methylstyrene)- Acrylonitrile-Butadiene-Styrene copolymer/Acrylic resin blends: Thermal properties and toughening mechanism. J. Vinyl Addit. Technol. 2014;(21): 205–214.
  42. Pillai S, Upadhyay A, Khayambashi P, et al. Dental 3D-Printing: Transferring Art from the Laboratories to the Clinics. Polymers. 2021;(13):157.
  43. Pawar BA. Maintenance of space by innovative three-dimensional-printed band and loop space maintainer. J. Indian Soc. Pedod. Prev. Dent. 2019;(37):205–208.
  44. Sanchez-Monescillo A, Duarte S. PROA concept: Prosthetic restoration with orthodontic appliance. Quintessence Int. 2020;(51):304–308.
  45. Graf S, Vasudavan S, Wilmes B. CAD-CAM design and 3-dimensional printing of mini-implant retained orthodontic appliances. Am. J. Orthod. Dentofac. Orthop. 2018;(154):877–882.
Language: English
Page range: 14 - 21
Submitted on: Apr 7, 2023
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Accepted on: May 29, 2023
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Published on: Jun 9, 2023
In partnership with: Paradigm Publishing Services
Publication frequency: 2 issues per year

© 2023 Silvia Izabella Pop, Mircea Dudescu, Laura Roxana Contac, Radu Vasile Pop, published by University of Medicine, Pharmacy, Science and Technology of Targu Mures
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.