Differential assessment of skeletal, alveolar, and dental components induced by microimplant-supported midfacial skeletal expander (MSE), utilizing novel angular measurements from the fulcrum.

Alveolar bone bending Cone-beam computed tomography (CBCT) Dental tipping Expansion Microimplant-assisted rapid palatal expansion (MARPE)

Journal

Progress in orthodontics
ISSN: 2196-1042
Titre abrégé: Prog Orthod
Pays: Germany
ID NLM: 100936353

Informations de publication

Date de publication:
13 Jul 2020
Historique:
received: 10 01 2020
accepted: 13 05 2020
entrez: 14 7 2020
pubmed: 14 7 2020
medline: 15 7 2020
Statut: epublish

Résumé

In order to assess skeletal expansion, alveolar bone bending, and dental tipping after maxillary expansion, linear and angular measurements have been performed utilizing different craniofacial references. Since the expansion with midfacial skeletal expander (MSE) is archial in nature, the aim of this paper is to quantify the differential components of MSE expansion by calculating the fulcrum locations and applying a novel angular measurement system. Thirty-nine subjects with a mean age of 18.2 ± 4.2 years were treated with MSE. Pre- and post-expansion CBCT records were superimposed and compared. The rotational fulcrum of the zygomaticomaxillary complex was identified by localizing the interfrontal distance and modified interfrontal distance. Based on the fulcrum, a novel angular measurement method is presented and compared with a conventional linear method to assess changes of the zygomaticomaxillary complex, dentoalveolar bone, and maxillary first molars. From 39 patients, 20 subjects have the rotational fulcrum of the zygomaticomaxillary complex at the most distant points of the interfrontal distance (101.6 ± 4.7 mm) and 19 subjects at the most distant points of the modified interfrontal distance (98.9 ± 5.7 mm). Linear measurements accounted for 60.16% and 56.83% of skeletal expansion, 16.15% and 16.55% of alveolar bone bending, and 23.69% and 26.62% of dental tipping for right and left side. Angular measurements showed 96.58% and 95.44% of skeletal expansion, 0.34% and 0.33% alveolar bone bending, and 3.08% and 4.23% of dental tipping for the right and left sides. The frontozygomatic, frontoalveolar, and frontodental angles were not significant different (P > 0.05). In the coronal plane, the center of rotation for the zygomaticomaxillary complex was located at the most external and inferior point of the zygomatic process of the frontal bone or slightly above and parallel to the interfrontal distance. Due to the rotational displacement of the zygomaticomaxillary complex, angular measurements should be a preferred method for assessing the expansion effects, instead of the traditional linear measurement method.

Sections du résumé

BACKGROUND BACKGROUND
In order to assess skeletal expansion, alveolar bone bending, and dental tipping after maxillary expansion, linear and angular measurements have been performed utilizing different craniofacial references. Since the expansion with midfacial skeletal expander (MSE) is archial in nature, the aim of this paper is to quantify the differential components of MSE expansion by calculating the fulcrum locations and applying a novel angular measurement system.
METHODS METHODS
Thirty-nine subjects with a mean age of 18.2 ± 4.2 years were treated with MSE. Pre- and post-expansion CBCT records were superimposed and compared. The rotational fulcrum of the zygomaticomaxillary complex was identified by localizing the interfrontal distance and modified interfrontal distance. Based on the fulcrum, a novel angular measurement method is presented and compared with a conventional linear method to assess changes of the zygomaticomaxillary complex, dentoalveolar bone, and maxillary first molars.
RESULTS RESULTS
From 39 patients, 20 subjects have the rotational fulcrum of the zygomaticomaxillary complex at the most distant points of the interfrontal distance (101.6 ± 4.7 mm) and 19 subjects at the most distant points of the modified interfrontal distance (98.9 ± 5.7 mm). Linear measurements accounted for 60.16% and 56.83% of skeletal expansion, 16.15% and 16.55% of alveolar bone bending, and 23.69% and 26.62% of dental tipping for right and left side. Angular measurements showed 96.58% and 95.44% of skeletal expansion, 0.34% and 0.33% alveolar bone bending, and 3.08% and 4.23% of dental tipping for the right and left sides. The frontozygomatic, frontoalveolar, and frontodental angles were not significant different (P > 0.05).
CONCLUSIONS CONCLUSIONS
In the coronal plane, the center of rotation for the zygomaticomaxillary complex was located at the most external and inferior point of the zygomatic process of the frontal bone or slightly above and parallel to the interfrontal distance. Due to the rotational displacement of the zygomaticomaxillary complex, angular measurements should be a preferred method for assessing the expansion effects, instead of the traditional linear measurement method.

Identifiants

pubmed: 32656601
doi: 10.1186/s40510-020-00320-w
pii: 10.1186/s40510-020-00320-w
pmc: PMC7355053
doi:

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

18

Références

Prog Orthod. 2017 Nov 1;18(1):34
pubmed: 29090368
Am J Orthod Dentofacial Orthop. 2010 Mar;137(3):304.e1-12; discussion 304-5
pubmed: 20197161
Angle Orthod. 2015 Mar;85(2):322-34
pubmed: 25032737
Prog Orthod. 2018 Oct 22;19(1):41
pubmed: 30345476
Korean J Orthod. 2013 Apr;43(2):83-95
pubmed: 23671833
Am J Orthod Dentofacial Orthop. 2010 Oct;138(4):486-492
pubmed: 20889055
Am J Orthod Dentofacial Orthop. 2010 Jun;137(6):830-9
pubmed: 20685540
Eur J Orthod. 2007 Aug;29(4):379-85
pubmed: 17702798
Eur J Orthod. 2008 Feb;30(1):67-72
pubmed: 18276928
Prog Orthod. 2018 Nov 19;19(1):46
pubmed: 30450504
Eur J Orthod. 2015 Oct;37(5):556-64
pubmed: 25564504
Dentomaxillofac Radiol. 2005 Nov;34(6):369-75
pubmed: 16227481
Am J Orthod Dentofacial Orthop. 2015 Oct;148(4):599-607
pubmed: 26432315
Phys Ther Sport. 2019 Mar;36:70-77
pubmed: 30677598
Am J Orthod Dentofacial Orthop. 2001 Jan;119(1):11-20
pubmed: 11174532
Case Rep Dent. 2018 Dec 6;2018:1392895
pubmed: 30627452
Am J Orthod Dentofacial Orthop. 2016 May;149(5):716-28
pubmed: 27131254
Prog Orthod. 2014 Aug 29;15:52
pubmed: 25242527
Am J Orthod Dentofacial Orthop. 2000 May;117(5):567-70
pubmed: 10799117
World J Orthod. 2010 Winter;11(4):323-30
pubmed: 21490997
Angle Orthod. 2009 Jan;79(1):24-9
pubmed: 19123695
Am J Orthod Dentofacial Orthop. 2015 Jul;148(1):97-109
pubmed: 26124033
Dental Press J Orthod. 2017 Feb;22(1):110-125
pubmed: 28444019
Angle Orthod. 2016 Mar;86(2):241-9
pubmed: 25993250
Am J Orthod Dentofacial Orthop. 2010 Apr;137(4 Suppl):S79-85
pubmed: 20381765
Am J Orthod Dentofacial Orthop. 2017 May;151(5):887-897
pubmed: 28457266
Angle Orthod. 2019 Sep;89(5):713-720
pubmed: 30896250
Korean J Orthod. 2017 Mar;47(2):77-86
pubmed: 28337417
Am J Orthod Dentofacial Orthop. 2018 Sep;154(3):337-345
pubmed: 30173836
Angle Orthod. 1997;67(1):15-22
pubmed: 9046395
Am J Orthod Dentofacial Orthop. 2011 Sep;140(3):366-76
pubmed: 21889081
Int Orthod. 2016 Mar;14(1):15-31
pubmed: 26850998
Angle Orthod. 2018 Sep;88(5):649-664
pubmed: 29714067
Angle Orthod. 2001 Oct;71(5):343-50
pubmed: 11605867
Angle Orthod. 2015 Mar;85(2):253-62
pubmed: 25490552
Am J Orthod Dentofacial Orthop. 2011 Oct;140(4):510-9
pubmed: 21967938
Dental Press J Orthod. 2017 Feb;22(1):89-97
pubmed: 28444010

Auteurs

Ney Paredes (N)

Division of Growth and Development, Section of Orthodontics, School of Dentistry, Center for Health Science, University of California, Los Angeles, Room 63-082 CHS, 10833 Le Conte Ave, Box 951668, Los Angeles, CA, 90095-1668, USA. neyalbertoparedes@gmail.com.

Ozge Colak (O)

Division of Growth and Development, Section of Orthodontics, School of Dentistry, Center for Health Science, University of California, Los Angeles, Room 63-082 CHS, 10833 Le Conte Ave, Box 951668, Los Angeles, CA, 90095-1668, USA.

Luca Sfogliano (L)

Division of Growth and Development, Section of Orthodontics, School of Dentistry, Center for Health Science, University of California, Los Angeles, Room 63-082 CHS, 10833 Le Conte Ave, Box 951668, Los Angeles, CA, 90095-1668, USA.

Islam Elkenawy (I)

Division of Growth and Development, Section of Orthodontics, School of Dentistry, Center for Health Science, University of California, Los Angeles, Room 63-082 CHS, 10833 Le Conte Ave, Box 951668, Los Angeles, CA, 90095-1668, USA.

Layla Fijany (L)

Division of Growth and Development, Section of Orthodontics, School of Dentistry, Center for Health Science, University of California, Los Angeles, Room 63-082 CHS, 10833 Le Conte Ave, Box 951668, Los Angeles, CA, 90095-1668, USA.

Andrew Fraser (A)

Division of Growth and Development, Section of Orthodontics, School of Dentistry, Center for Health Science, University of California, Los Angeles, Room 63-082 CHS, 10833 Le Conte Ave, Box 951668, Los Angeles, CA, 90095-1668, USA.

Boshi Zhang (B)

Division of Growth and Development, Section of Orthodontics, School of Dentistry, Center for Health Science, University of California, Los Angeles, Room 63-082 CHS, 10833 Le Conte Ave, Box 951668, Los Angeles, CA, 90095-1668, USA.

Won Moon (W)

Division of Growth and Development, Section of Orthodontics, School of Dentistry, Center for Health Science, University of California, Los Angeles, Room 63-082 CHS, 10833 Le Conte Ave, Box 951668, Los Angeles, CA, 90095-1668, USA. wmoon@dentistry.ucla.edu.

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