| Literature DB >> 34674199 |
Silvana Silveira1, Patricia Valerio2, Almiro J Machado Júnior3.
Abstract
The law of minimum vertical dimension (MVD) states that "when the mandible moves to reach the maximum intercuspal position, this always involves bringing the mandible and maxilla as close together as possible." Therefore, after the first occlusal contact is made, the MIP will be reached through reduction of the vertical dimension. Our objective of this study, through an integrative review of the literature review, was to determine whether ignoring this law is a factor that contributes to malocclusion, temporomandibular joint dysfunction, and recurrences of functional orthodontic and orthopedic treatments.We conducted a search of the literature in five of the main electronic scientific databases. The following medical subject heading terms were used in our search: centric relation, dental occlusion, malocclusion, vertical dimension, and mastication. We cross-referenced the descriptors in the following four groups: centric relation and maximum intercuspation; occlusal plane and malocclusion; neuro-occlusal rehabilitation; and vertical dimension and unilateral chewing. From this, we selected 277 potentially eligible articles. Out of these, 209 were excluded in accordance with the exclusion criteria already described. Thus, 65 studies were included in the qualitative synthesis.The articles were also classified according to their impact factor and degree of recommendation, in conformity with the table of the Oxford Centre for Evidence-Based Medicine. The scientific interest in the scope of the articles was also assessed by using three charts developed according to year and country of publication and the percentage of publication. Unilateral chewing creates a vicious cycle of damage that leads to an ever-increasing masticatory deficiency. Most of the articles chosen for this review confirmed that noncompliance with law of MVD was a predisposing factor in cases of relapse, in functional orthodontic and orthopedic treatments, as well as a causal factor in malocclusion and in functional and morphological TMJ dysfunctions. The Author(s). This is an open access article published by Thieme under the terms of the Creative Commons Attribution License, permitting unrestricted use, distribution, and reproduction so long as the original work is properly cited. (https://creativecommons.org/licenses/by/4.0/).Entities:
Year: 2021 PMID: 34674199 PMCID: PMC9339914 DOI: 10.1055/s-0041-1732950
Source DB: PubMed Journal: Eur J Dent
Fig. 1Planas' masticatory functional angle (image modified from reference 3 ).
Fig. 2Flow chart.
Fig. 3Eligible articles.
Fig. 4Distribution of articles per year.
Fig. 5Publications by country.
Recommendation degree (RD) and Impact Factor (IF)
| Journal |
IF
|
RD
| |
|---|---|---|---|
| 1. | Rev Asoc Argent Ortop Funcional Maxilares 2002; 33(1): 9-25 | NA | B |
| 2. | Revista APCD 2019; 73(2):149-154 | 0.28 | C |
| 4. | Rev Orthop Dento Faciale 2001; 35(3):319-336 | 0.35 | B |
| 5. | Case Rep Dent 2013:395784 | 0.27 | C |
| 6. | Rev Orthop Dento Faciale 2002; 36(1):53-73 | 0.35 | B |
| 7. | RFO UPF 24(1):31-37, 29/03/2019 | NA | C |
| 8. | Orthodontie Française 2006; 77(1):113-135 | 0.18 | B |
| 10. | Stoma Edu J 2014; 1(2):86-91 | 1.10 | B |
| 11. | Rev Odontol da Univ de São Paulo 2008 Jan-Abr; 20(1):82-86 |
NA
| B |
| 12. | Journal of Research in Dentistry 2018; 6(6):132-137 | NA | B |
| 13. | Eur J Dent 2015; 9(4):573-579 | 0.59 | B |
| 15. | West China Journal of Stomatology 2013; 31(4):331–340 | 0.11 | B |
| 16. | RSBO 2007 (Impr.); 4(2):61-64 |
NA
| C |
| 17. | Am J Orthod Dentofacial Orthop 2010; 137(4):454.e1-454.e9 | 1.38 | B |
| 18. | Angle Orthod 2014; 84(6):939-945 | 1.22 | B |
| 19. | Head Face Med 2013; 9:42 | 0.46 | B |
| 20. | Am J Orthod Dentofacial Orthop 2004; 126(5):549-554 | 1.14 | B |
| 21. | Compend Contin Educ Dent 2020; 41(4):e1-e6 | 0,29 | B |
| 22. | Int J Orthod Milwaukee 2013; 24(2):21-28 | 0.06 | C |
| 23. | Acta Odontol Scand 2016; 74(2):103-107 | 1.67 | C |
| 24. | Braz Dent J 2010; 21(4):351–355 | NA | B |
| 25. | Braz Oral Res 2011; 25(5):446-452 | 0.71 | C |
| 26. | J Int Med Res 2019; 47(5):1908-1915 | 0.77 | B |
| 27. | Chin J Dent Res 2000; 3(1):34-39 | 0,46 | B |
| 28. | Revista APCD 2019; 73(2):102-105 | NA | D |
| 29. | Journal of the Lins Dentistry School 2015; 25(1):67-77 | 0.85 | C |
| 30. | Eur J Orthod 2011; 33(6):620-627 | 0.89 | B |
| 31. | Orthod Fr 2006; 77(4):431-437 | 0.18 | B |
| 32. | Am J Orthod Dentofacial Orthop 2008; 134(5):602.e11 | 1.42 | B |
| 33. | J Oral Rehabil 2013; 40(1):69-79 | 1.93 | B |
| 34. | J Prosthodont 2020; 10.1111/jopr.13307 | 1.23 | B |
| 35. | Orthod Fr 2002; 73(2):199-214 | 0.08 | B |
| 36. | Journal of Sichuan University Medical Science Edition 2013; 44(2):231–236 | 0.17 | B |
| 37. | Am J Orthod Dentofacial Orthop 2016; 150(1):140-152 | 2.20 | B |
| 38. | Progress in Orthodontics 2014; 15(1):41 | 0.44 | B |
| 39. | Am J Orthod Dentofacial Orthop 2016; 149(1):46-54 | 2.20 | B |
| 40. | Cranio 2018; 36(3):143-155 | 1.09 | B |
| 41. | Oral Dis 2013; 19(4):406-414 | 2.37 | B |
| 42. | J Esthet Restor Dent 2019; 31(6):620-626 | 1.78 | B |
| 43. | Acta Odontol Scand 2010; 68(6):368-376 | 1.41 | B |
| 44. | Rev Orthop Dento Faciale 2017; 51(3):399-412 | 0.27 | B |
| 45. | Sci Rep 2019; 9(1):15599 | 3.99 | C |
| 46. | Am J Orthod Dentofacial Orthop 2007; 131(4):464-472 | 1.59 | C |
| 47. | Am J Orthod Dentofacial Orthop 2000 Nov; 118(5):541-548 | 0.79 | B |
| 48. | Indian J Dent Res 2011; 22(5):654-658 | 0.28 | C |
| 49. | Annali Di Stomatologia 201; 9(1):53-58 | NA | C |
| 50. | Revista CEFAC 2007; 9(3):351-357 | 0.76 | C |
| 51. | World Journal of Orthodontics 2002; 3(3):239-249 | NA | C |
| 52. | Brazilian Oral Research 2010; 24(2):204-210 | 0.90 | B |
| 53. | Rev Orthop Dento Faciale 2001; 35(3):339-346 | 0.35 | B |
| 54. | Revista Cubana de Estomatología 2015; 52(2):150-159 | 0.14 | B |
| 55. | Orthod Fr 2006; 77(1):87-99 | 0. 20 | B |
| 56. | Orthod Fr 2010; 81(3):189-207 | 0.18 | B |
| 57. | Arch Oral Biol 2009; 54(2):101-107 | 1.46 | B |
| 58. | Am J Orthod Dentofacial Orthop 2008; 133(6):804-808 | 1.68 | B |
| 59. | Arch Oral Biol 2014; 59(12):1316-1320 | 1.73 | B |
| 60. | Dental Press J Orthod [online] 2020; 25(5):44-50 | 0.94 | C |
| 61. | Indian J Dent Res 2012; 23(6):719-725 | 0.28 | B |
| 62. | J Stomat Occ Med 2009; 2(3):122-130 | NA | B |
| 63. | Am J Orthod Dentofacial Orthop 2003; 123(3):329-337 | 0.83 | B |
| 64. | West China Journal of Stomatology 2011; 29(1):48–52 | 0.11 | C |
| 65. | Eur J Orthod 2004; 26(1):65-72 | 0.97 | B |
| 66. | Minerva Stomatologica 2001; 50(7-8):247–263 | 0.37 | C |
| 67. | J Indian Soc Pedod Prev Dent 2010; 28(1):30-33 | 0.61 | B |
| 68. | Progress in Orthodontics 2010; 11(1):53-61 | 0.19 | B |
Articles 3, 9 and 14 are not included in the table, as they were not included in the methodology.
NA: Not Available; IF: Impact Factor; RD: Recommendation Degree.