Literature DB >> 19852600

Optimal loading conditions for controlled movement of anterior teeth in sliding mechanics.

Jun-Ya Tominaga1, Motohiro Tanaka, Yoshiyuki Koga, Carmen Gonzales, Masaru Kobayashi, Noriaki Yoshida.   

Abstract

OBJECTIVE: To determine optimal loading conditions such as height of retraction force on the power arm and its position on the archwire in sliding mechanics.
MATERIALS AND METHODS: A 3D finite element method (FEM) was used to simulate en masse anterior teeth retraction in sliding mechanics. The degree of labiolingual tipping of the maxillary central incisor was calculated when the retraction force was applied to different heights of a power arm set mesial or distal to the canine.
RESULTS: When the power arm was placed mesial to the canine, at the level of 0 mm (bracket slot level), uncontrolled lingual crown tipping of the incisor was observed and the anterior segment of the archwire was deformed downward. At a power arm height of 5.5 mm, bodily movement was produced and the archwire was less deformed. When the power arm height exceeded 5.5 mm, the anterior segment of the archwire was raised upward and lingual root tipping occurred. When the power arm was placed distal to the canine, lingual crown tipping was observed up to a level of 11.2 mm.
CONCLUSIONS: Placement of the power arm of an archwire between the lateral incisor and canine enables orthodontists to maintain better control of the anterior teeth in sliding mechanics. Both the biomechanical principles associated with the tooth's center of resistance and the deformation of the archwire should be taken into consideration for predicting and planning orthodontic tooth movement.

Entities:  

Mesh:

Year:  2009        PMID: 19852600     DOI: 10.2319/111608-587R.1

Source DB:  PubMed          Journal:  Angle Orthod        ISSN: 0003-3219            Impact factor:   2.079


  20 in total

1.  En-masse Retraction of the Maxillary Anterior Teeth by Applying Force from Four Different Levels - A Finite Element Study.

Authors:  Chetan S; Kanhoba M Keluskar; Vikram N Vasisht; Siddharth Revankar
Journal:  J Clin Diagn Res       Date:  2014-09-20

2.  Mechanical environment for lower canine T-loop retraction compared to en-masse space closure with a power-arm attached to either the canine bracket or the archwire.

Authors:  Feifei Jiang; W Eugene Roberts; Yanzhi Liu; Abbas Shafiee; Jie Chen
Journal:  Angle Orthod       Date:  2020-11-01       Impact factor: 2.079

3.  Force System with Vertical V-Bends: A 3D In Vitro Assessment of Elastic and Rigid Rectangular Archwires.

Authors:  Madhur Upadhyay; Raja Shah; Sachin Agarwal; Meenakshi Vishwanath; Po-Jung Chen; Takafumi Asaki; Donald Peterson
Journal:  J Vis Exp       Date:  2018-07-24       Impact factor: 1.355

4.  Scientific use of the finite element method in Orthodontics.

Authors:  Luegya Knop; Luiz Gonzaga Gandini; Ricardo Lima Shintcovsk; Marcia Regina Elisa Aparecida Schiavon Gandini
Journal:  Dental Press J Orthod       Date:  2015 Mar-Apr

5.  Biomechanical influence of anchorages on orthodontic space closing mechanics by sliding method.

Authors:  Zhan Liu; Tinghui Sun; Yubo Fan
Journal:  Med Biol Eng Comput       Date:  2020-03-11       Impact factor: 2.602

6.  Relationship between different skeletal facial types and anterior alveolar bone thickness with cone-beam computed tomography in an Asian population.

Authors:  Baochao Li; Jialing Li; Huijuan Wang; Xiaoqiu Xie; Juan Wen; Huang Li
Journal:  Ann Transl Med       Date:  2022-09

7.  Distalization pattern of whole maxillary dentition according to force application points.

Authors:  Eui-Hyang Sung; Sung-Jin Kim; Youn-Sic Chun; Young-Chel Park; Hyung-Seog Yu; Kee-Joon Lee
Journal:  Korean J Orthod       Date:  2015-01-26       Impact factor: 1.372

8.  Finite element analysis of maxillary incisor displacement during en-masse retraction according to orthodontic mini-implant position.

Authors:  Jae-Won Song; Joong-Ki Lim; Kee-Joon Lee; Sang-Jin Sung; Youn-Sic Chun; Sung-Seo Mo
Journal:  Korean J Orthod       Date:  2016-07-25       Impact factor: 1.372

9.  Effect of play between bracket and archwire on anterior tooth movement in sliding mechanics: A three-dimensional finite element study.

Authors:  Jun-Ya Tominaga; Pao-Chang Chiang; Hiroya Ozaki; Motohiro Tanaka; Yoshiyuki Koga; Christoph Bourauel; Noriaki Yoshida
Journal:  J Dent Biomech       Date:  2012-10-17

Review 10.  Revolution in Orthodontics: Finite element analysis.

Authors:  Johar Rajvinder Singh; Prabhuraj Kambalyal; Megha Jain; Piyush Khandelwal
Journal:  J Int Soc Prev Community Dent       Date:  2016 Mar-Apr
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