Finite element analysis of two skeletally anchored maxillary molar distalisation methods

Author:

Vilanova Lorena1,Bellini-Pereira Silvio Augusto1ORCID,Patel Mayara Paim2,Grec Roberto1,Henriques José Fernando Castanha1,Janson Guilherme1,Garib Daniela1,Aliaga-Del Castillo Aron3

Affiliation:

1. Department of Orthodontics, Bauru Dental School, University of São Paulo, Bauru, SP, Brazil

2. Department of Orthodontics, University of Guarulhos, Guarulhos, Brazil

3. Department of Orthodontics and Pediatric Dentistry, School of Dentistry, University of Michigan, Ann Arbor, MI, USA

Abstract

Objective: To compare two methods of maxillary molar distalisation with skeletal anchorage using finite element analysis (FEA). Methods: Two digitised models were created: the miniscrew-anchored distaliser, which consisted of a distalisation method anchored in a buccal miniscrew between the first molar and second premolar (Model 1), and the miniscrew-anchored palatal appliance, which consisted of a distalisation method anchored in a miniscrew on the anterior region of the palate (Model 2). FEA was used to simulate both methods, assessing teeth displacements and stress concentration. Results: The miniscrew-anchored distaliser showed greater buccal than distal displacement of the first molar, while the opposite was observed in the miniscrew-anchored palatal appliance. The second molar responded similarly in the transverse and anteroposterior perspectives with both appliances. Greater displacements were observed at crown level than in apical regions. Greater stress concentration was observed at the buccal and cervical regions of the crown in the miniscrew-anchored distaliser and the palatal and cervical regions in the palatal appliance. The stress progressively spread in the buccal side of the alveolar bone for the miniscrew-anchored distaliser and in the palatal root and alveolar bone for the palatal appliance. Conclusion: FEA assumes that both appliances would promote maxillary molar distalisation. A skeletally anchored palatal distalisation force seems to provide a greater molar bodily movement with less undesirable effects. Greater stress is expected at the crown and cervical regions during distalisation, and the stress concentration in the roots and alveolar bone depends directly on the region the force was applied.

Funder

Coordenação de Aperfeiçoamento de Pessoal de Nível Superior

Publisher

SAGE Publications

Subject

Orthodontics

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