Literature DB >> 23484308

[Establishment and biomechanical analysis of three-dimensional nonlinear finite element model of three-pieces segment arch].

Shijun Lu1, Zhendong Wang, Xiaoyu Ni, Lin Wang.   

Abstract

OBJECTIVE: To reconstruct a three-dimensional nonlinear finite element model of mandibular teeth with three-pieces segment arch, and analyze the mechanical properties of intrusive arch and the biomechanical characteristics of three-pieces segment arch.
METHODS: Three-dimensional nonlinear finite element model of mandible with three-pieces segment arch was reconstructed by multi-slice spiral CT scanning, Mimics, CATIA and Anasys software. Then, the mechanical properties of intrusive arch, the movement trend and stress distribution of three-pieces segment arch were calculated by Anasys software.
RESULTS: In the range of 5 degrees-25 degrees, with the degree of intrusive arch increased, the force of intrusive arch also increased rapidly. The maximal force was 0.604 8 N in 30 degrees; the force was about 0.59 N in 30 degrees-65 degrees range. In condition of three-pieces segment arch mechanics, lateral incisor tipped labially and intruded; the first moral tipped distally and rotating; other teeth did not move clearly. The largest stress distribution in the whole arch was in the one-third labial cervical area of the lateral incisor root and the root bifurcations of first moral.
CONCLUSION: Under an appropriate intrusive force, three-pieces segment arch can intrude incisors and control the extrusion of posterior teeth. It can be used to correct the deep overbite, especially with high mandibular planes, gummy smile or adult patients.

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Mesh:

Year:  2013        PMID: 23484308

Source DB:  PubMed          Journal:  Hua Xi Kou Qiang Yi Xue Za Zhi        ISSN: 1000-1182


  2 in total

1.  Topping-off technique prevents aggravation of degeneration of adjacent segment fusion revealed by retrospective and finite element biomechanical analysis.

Authors:  Zhenqi Zhu; Chenjun Liu; Kaifeng Wang; Jian Zhou; Jiefu Wang; Yi Zhu; Haiying Liu
Journal:  J Orthop Surg Res       Date:  2015-01-28       Impact factor: 2.359

2.  Biomechanical effect of bone resorption of the spinous process after single-segment interspinous dynamic stabilization device implantation: A finite element analysis.

Authors:  Zhen-Qi Zhu; Shuo Duan; Kai-Feng Wang; Hai-Ying Liu; Shuai Xu; Chen-Jun Liu
Journal:  Medicine (Baltimore)       Date:  2018-07       Impact factor: 1.889

  2 in total

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