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正畸力作用下的根尖力分布:一项有限元研究。

Apical force distribution due to orthodontic forces: a finite element study.

作者信息

Mathur Anirudh K, Gupta Vikas, Sarmah Anirban, Pai Vinaya S, Chandrashekar G

机构信息

Department of Orthodontics, HKDET Dental College, Humnabad, Karnataka, India.

出版信息

J Contemp Dent Pract. 2011 Mar 1;12(2):104-8. doi: 10.5005/jp-journals-10024-1017.

Abstract

AIM

This finite element study was conducted to calculate the distribution of stresses in the periodontal ligament when various orthodontic forces were applied, with emphasis on the effect on root apex.

MATERIALS AND METHODS

An in vitro finite element method was used to construct a three-dimensional finite element model of a maxillary central incisor, its periodontal ligament and alveolar bone was constructed on the basis of average anatomic morphology. To this model, five types of orthodontic forces namely tipping, bodily movement, intrusion, extrusion and rotations were applied at various points on the crown of the tooth model. After the application of the forces, initial stress and initial displacements of the periodontal ligament were evaluated. The principal stress obtained on the periodontal ligament due to various orthodontic loadings on the maxillary central incisor was analyzed using ANSYS 10 finite element software.

RESULTS

It showed that the greatest amount of relative stress at the apex of maxillary central incisor occurred with intrusion, extrusion and rotation. Bodily movement and tipping forces produce stress concentrated at the alveolar crest and not at the root apex.

CONCLUSION

Clinical implications of this study suggest that if the clinician is concerned about placing heavy stresses on the root apex, then vertical and rotational forces must be applied with caution.

CLINICAL SIGNIFICANCE

If heavy stresses are to be placed on the root apex, then vertical and rotational forces must be applied with caution during orthodontic therapy.

摘要

目的

本有限元研究旨在计算施加各种正畸力时牙周膜内的应力分布,重点关注对根尖的影响。

材料与方法

采用体外有限元方法,基于平均解剖形态构建上颌中切牙及其牙周膜和牙槽骨的三维有限元模型。在牙齿模型的冠部不同点施加五种正畸力,即倾斜、整体移动、压低、伸长和旋转。施加力后,评估牙周膜的初始应力和初始位移。使用ANSYS 10有限元软件分析上颌中切牙在各种正畸载荷作用下牙周膜上获得的主应力。

结果

结果表明,上颌中切牙根尖处的相对应力最大值出现在压低、伸长和旋转时。整体移动和倾斜力产生的应力集中在牙槽嵴而非根尖。

结论

本研究的临床意义表明,如果临床医生担心对根尖施加过大应力,那么必须谨慎施加垂直和旋转力。

临床意义

如果要对根尖施加过大应力,那么在正畸治疗期间必须谨慎施加垂直和旋转力。

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