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Deformación, desgaste y pérdida de inserción gradual en zonas de anclaje y puntos de presión de los alineadores ortodóncicos: estudio in vitro

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2021
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El objetivo global propuesto para este trabajo de investigación es caracterizar el comportamiento de los sistemas termoplásticos ortodóncicos (alineadores) en un modelo cíclico de desgaste por inserción-desinserción. De esta forma se pretendió evaluar y cuantificar de modo analítico la variación gradual de la deformación, el desgaste y la pérdida de inserción de los alineadores ortodóncicos, en zonas de anclaje y puntos de presión en un modelo controlado in vitro libre de la influencia de factores mecánicos y químicos sobre el sistema.
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Kesling HD. The philosophy of the tooth positioning appliacne. Am J Orthod Dentofac Orthop.1945;31(6):297–304. 2. Ponitz RJ. Invisible retainers. Am J Orthod Dentofac Orthop. 1971;59(3):266–272. 3. McNamara JA, Kramer KL, Juenker JP. Invisible retainers. J Clin Orthod. 1985;19(8):570–578. 4. Sheridan, John J;Ledoux W, McMinn R. Essix appliances: minor tooth movement with divots and windows. J Clin Orthod. 1994;38(11):659–663. 5. Sheridan, John J; McMinn R, Ledoux W.Esssix hermosealesd appliances: various orthodontic uses. J Clin Orthod. 1995;29(2):108–113. 6. Rinchause DJ, Rinchause DJ. Active tooth movement with essix-based appliances. J Clin Orthod. 1997;31(2):109–112. 7. Lindauer, Steven J; Schoff RC. Comparison of essix and hawley retainers. J Clin Orthod. 1998;32(2):95–97. 8. Rivero Lesmes JC, Román Jiménez M. La técnica Invisalign. Editor Ripano, SA. 2009;352. 9. Solano Mendoza B. Predictibilidad de la expansión con el sistema Invisalign® [Tésis doctoral]. Universidad de Sevilla; 2015. 10. Ryu J-H, Kwon J-S, Jiang HB, Cha J-Y, Kim K-M. Effects of thermoforming on the physical and mechanical properties of thermoplastic materials for transparent orthodontic aligners. Korean J Orthod. 2018 Jan 1;48(5):311–316. 11. Kravitz ND, Kusnoto B, BeGole E, Obrez A, Agran B. How well does Invisalign work? A prospective clinical study evaluating the efficacy of tooth movement with Invisalign. Am J Orthod Dentofac Orthop. 2009 Jan 1;135(1):27–35. 12. Weir T. Clear aligners in orthodontic treatment. Aust Dent J. 2017;62(1):58–62. 13. Dasy H, Dasy A, Asatrian G, Rózsa N, Lee H-F, Kwak JH. Effects of variable attachment shapes and aligner material on aligner retention. Angle Orthod. 2015 Nov 1;85(6):934–940. 14. Robertson L, Kaur H, Fernandes Fagundes NC, Romanyk D, Major P, Flores Mir C. Effectiveness of clear aligner therapy for orthodontic treatment: A systematic review. Orthod Craniofacial Res. 2019;00(October):1–10. 15. Papadimitriou A, Mousoulea S, Gkantidis N, Kloukos D. Clinical effectiveness of Invisalign® orthodontic treatment: a systematic review. Prog Orthod. 2018;19(1):1–24. 16. Pango Madariaga AC, Bucci R, Rongo R, Simeon V, D’Antò V, Valletta R. Impact of Fixed Orthodontic Appliance and Clear Aligners on the Periodontal Health: A Prospective Clinical Study. Dent J. 2020;8(1):4. 17. Kuo E, Miller RJ. Automated custom-manufacturing technology in orthodontics. Am J Orthod Dentofac Orthop. 2003;123(5):578–581. 18. Wong BH, Scholz RP, Turpin DL. Invisalign A to Z. Am J Orthod Dentofac Orthop.2002;121(5):540–541. 19. Fang D, Zhang N, Chen H, Bai Y. Dynamic stress relaxation of orthodontic thermoplastic materials in a simulated oral environment. Dent Mater J. 2013 Jan 1;32(6):946–951. 20. Lombardo L, Arreghini A, Maccarrone R, Bianchi A, Scalia S, Siciliani G. Optical properties of orthodontic aligners—spectrophotometry analysis of three types before and after aging. Prog Orthod. 2015 Nov 17;16(41):1–8. 21. Bucci R, Rongo R, Levatè C, Michelotti A, Barone S, Razionale AV, et al. Thickness of orthodontic clear aligners after thermoforming and after 10 days of intraoral exposure: a prospective clinical study. Prog Orthod. 2019 Aug 15;20(36):1–8. 22. Condo R, Pazzini L, Cerroni L, Pasquantonio G, Lagana G, Pecora A, et al. Mechanical properties of “two generations” of teeth aligners: Change analysis during oral permanence. Dent Mater J. 2018 Jan 1;37(5):835–842. 23. Kwon JS, Lee YK, Lim BS, Lim YK. Force delivery properties of thermoplastic orthodontic materials. Am J Orthod Dentofac Orthop. 2008;133(2):228–234. 24. Iliadi A, Koletsi D, Eliades T. Forces and moments generated by aligner‐type appliances for orthodontic tooth movement: A systematic review and meta‐analysis. Orthod Craniofac Res.2019 Oct 9;22(4):248–258. 25. Bradley G, Lauren T, Eliades G, Zinelis S, Eliades T. Do the mechanical and chemical properties of InvisalignTM appliances change after use? A retrieval analysis. Eur J Orthod. 2016;38(1):27–31. 26. Willmann J, Nimer A, Drescher D. Effect of in vitro aging by water immersion and thermocycling on the mechanical properties of PETG aligner material. J Orofac Orthop. 2019 Oct 1;80(6):292–303. 27. Papadopoulou AK, Cantele A, Polychronis G, Zinelis S, Eliades T. Changes in Roughness and Mechanical Properties of Invisalign® Appliances after One- and Two-Weeks Use. Materials (Basel). 2009 Aug 1;12(15):2406–2409. 28. Lombardo L, Martines E, Mazzanti V, Arreghini A, Mollica F, Siciliani G. Stress relaxation properties of four orthodontic aligner materials: A 24-hour in vitro study. Angle Orthod. 2017 Jan 1;87(1):11–18. 29. Alexandropoulos A, Al Jabbari YS, Zinelis S, Eliades T. Chemical and mechanical characteristics of contemporary thermoplastic orthodontic materials. Aust Orthod J. 2015;31(2):165–170. 30. Ryokawa H, Miyazaki Y, Fujishima A, Miyazaki T, Maki K. The mechanical properties of dental thermoplastic materials in a simulated intraoral environment. Orthod Waves. 2006;65(2):64–72. 31. Zhang N, Bai Y, Ding X, Zhang Y. Preparation and characterization of thermoplastic materials for invisible orthodontics. Dent Mater J. 2011;30(6):954–959. 32. Anusavice KJ. Phillips. Ciencia de los materiales dentales. Madrid: Elsesvier; 2004. 33. Macchi RL. Materiales dentales. 4a Edición. Buenos Aires: Editorial Médica Panamericana;2007. 34. Schuster S, Eliades G, Zinelis S, Eliades T, Bradley TG. Structural conformation and leaching from in vitro aged and retrieved Invisalign appliances. Am J Orthod Dentofac Orthop. 2004 Dec 1;126(6):725–728. 35. Gracco A, Mazzoli A, Favoni O, Conti C, Ferraris P, Tosi G, et al. Short-term chemical and physical changes in Invisalign appliances. Aust Orthod J. 2010 Jul 20;25(1):34–40. 36. Liu C-L, Sun W-T, Liao W, Lu W-X, Li Q-W, Jeong Y, et al. Colour stabilities of three types of orthodontic clear aligners exposed to staining agents. Int J Oral Sci. 2016 Sep 23;8(4):246–253. 37. Watts DC, Cash AJ. Analysis of optical transmission by 400-500 nm visible light into aesthetic dental biomaterials. J Dent. 1994 Apr;22(2):112–117. 38. Jones ML, Mah J, O’Toole BJ. Retention of thermoformed aligners with attachments of various shapes and positions. J Clin Orthod. 2009;43(2):113–117. 39. Mantovani E, Castroflorio E, Rossini G, Garino F, Cugliari G, Deregibus A, et al. Scanning electron microscopy evaluation of aligner fit on teeth. Angle Orthod. 2018 Sep 1;88(5):596–601. 40. Mantovani E, Castroflorio E, Rossini G, Garino F, Cugliari G, Deregibus A, et al. Scanning electron microscopy analysis of aligner fitting on anchorage attachments. J Orofac Orthop.2019 Jan 23;80(2):79–87. 41. Cowley DP, Mah J, O’Toole B. The effect of gingival-margin design on the retention of thermoformed aligners. J Clin Orthod. 2012;46(11):697–702. 42. Gao L, Wichelhaus A. Forces and moments delivered by the PET-G aligner to a maxillary central incisor for palatal tipping and intrusion. Angle Orthod. 2017 Jul 1;87(4):534–541. 43. Elkholy F, Panchaphongsaphak T, Kilic F, Schmidt F, Lapatki BG. Forces and moments delivered by PET-G aligners to an upper central incisor for labial and palatal translation. J Orofac Orthop. 2015 Oct 9;76(6):460–475. 44. Elkholy F, Schmidt F, Jäger R, Lapatki BG. Forces and moments applied during derotation of a maxillary central incisor with thinner aligners: An in-vitro study. Am J Orthod Dentofac Orthop . 2017 Feb 1;151(2):407–515. 45. Elkholy F, Mikhaiel B, Schmidt F, Lapatki BG. Mechanical load exerted by PET-G aligners during mesial and distal derotation of a mandibular canine. 2017 Mar; 24:1–9. 46. Hahn W, Zapf A, Dathe H, Fialka-Fricke J, Fricke-Zech S, Gruber R, et al. Torquing an upper central incisor with aligners--acting forces and biomechanical principles. Eur J Orthod. 2010 Nov 24;32(6):607–613. 47. Hahn W, Engelke B, Jung K, Dathe H, Kramer F-J, Rödig T, et al. The influence of occlusal forces on force delivery properties of aligners during rotation of an upper central incisor. Angle Orthod. 2011 Nov 1;81(6):1057–1063. 48. Edelmann A, English JD, Chen SJ, Kasper FK. Analysis of the thickness of 3-dimensional�printed orthodontic aligners. Am J Orthod Dentofac Orthop. 2020;158(5):91–98. 49. Palone M, Longo M, Arveda N, Nacucchi M, De Pascalis F, Spedicato GA, et al. Micro�computed tomography evaluation of general trends in aligner thickness and gap width after thermoforming procedures involving six commercial clear aligners: An in vitro study. Korean J Orthod.2021;51(2):135–141. 50. Mantovani E, Parrini S, Coda E, Cugliari G, Scotti N, Pasqualini D, et al. Micro computed tomography evaluation of Invisalign aligner thickness homogeneity. Angle Orthod. 2021;91(3):343–348. 51. Lombardo L, Palone M, Longo M, Arveda N, Nacucchi M, De Pascalis F, et al. MicroCT X�ray comparison of aligner gap and thickness of six brands of aligners: an in-vitro study. Prog Orthod. 2020;21(1):12. 52. Chen W, Qian L, Qian Y, Zhang Z, Wen X. Comparative study of three composite materials in bonding attachments for clear aligners. Orthod Craniofacial Res. 2021:1–8. 53. D’Antò V, Muraglie S, Castellano B, Candida E, Sfondrini MF, Scribante A, et al. Influence of dental composite viscosity in attachment reproduction: An experimental in vitro study. Materials (Basel). 2019;12(23):4001. 54. Zheng M, Liu R, Ni Z, Yu Z. Efficiency, effectiveness and treatment stability of clear aligners: A systematic review and meta-analysis. Orthod Craniofacial Res. 2017;20(3):127–133. 55. Li W, Wang S, Zhang Y. The effectiveness of the Invisalign appliance in extraction cases using the the ABO model grading system: a multicenter randomized controlled trial. Int J Clin Exp Med. 2015 May 15;8(5):8276–8282. 56. Ke Y, Zhu Y, Zhu M. A comparison of treatment effectiveness between clear aligner and fixed appliance therapies. BMC Oral Health. 2019;19(1):1–10. 57. Fang D, Li F, Zhang Y, Bai Y, Wu BM. Changes in mechanical properties, surface morphology, structure, and composition of Invisalign material in the oral environment. Am J Orthod Dentofac Orthop. 2020;157(6):745–753. 58. Bourne R. ImageJ. Fundam Digit Imaging Med. 2010;9(7):185–188. 59. Mantovani E, Castroflorio E, Rossini G, Garino F, Cugliari G, Deregibus A, et al. Scanning electron microscopy analysis of aligner fitting on anchorage attachments. J Orofac Orthop.2019;80(2):79–87. 60. Kohda N, Iijima M, Muguruma T, Brantley WA, Ahluwalia KS, Mizoguchi I. Effects of mechanical properties of thermoplastic materials on the initial force of thermoplastic appliances. Angle Orthod. 2013;83(3):476–483. 61. Ihssen BA, Willmann JH, Nimer A, Drescher D. Effect of in vitro aging by water immersion and thermocycling on the mechanical properties of PETG aligner material. J Orofac Orthop. 2019;80(6):292–303. 62. Inoue S, Yamaguchi S, Uyama H, Yamashiro T, Imazato S. Influence of constant strain on the elasticity of thermoplastic orthodontic materials. Dent Mater J. 2020;39(3):415–421. 63. Tamburrino F, D’Antò V, Bucci R, Alessandri-Bonetti G, Barone S, Razionale AV.Mechanical properties of thermoplastic polymers for aligner manufacturing: In vitro study.Dent J. 2020;8(2):47. 64. Golkhani B, Weber A, Keilig L, Reimann S, Bourauel C. Variation of the modulus of elasticity of aligner foil sheet materials due to thermoforming. 2021. 65. Barreda GJ, Dzierewianko EA, Muñoz KA, Piccoli GI. Surface wear of resin composites used for Invisalign® attachments. Acta Odontol Latinoam. 2017;30(2):90–95. 66. Weckmann J, Scharf S, Graf I, Schwarze J, Keilig L, Bourauel C, et al. Influence of attachment bonding protocol on precision of the attachment in aligner treatments. J Orofac Orthop.2020;81(1):30–40. 67. Cao L, Zhao X, Gong X, Zhao S. An in vitro investigation of wear resistance and hardness of composite resins. Int J Clin Exp Med. 2013;6(6):423–430. 68. Ravera S, Castroflorio T, Garino F, Daher S, Cugliari G, Deregibus A. Maxillary molar distalization with aligners in adult patients: A multicenter retrospective study. Prog Orthod. 2016;17(1):12.