West China Journal of Stomatology

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Photoelastic analysis of movement tendency of lower teeth using multiloop edgewise ar chwir e with vertical elastics in anterior teeth area

HU Min1, LIU Lei2, ZHANG Li- wen1, WU Hong2, YAN Wei- qun3, KAZUTO Terada   

  1. 1. Dept. of Orthodontics, Hospital of Stomatology, Jilin University, Changchun 130041, China;2. Center of Mechanical, Faculty of Mechanical and Engineering, Jilin University, Changchun 130025, China; 3. Dept. of Biological Engineering, Faculty of Pharmacy, Jilin University, Changchun 130021, China; 4. Dental Hospital, Niigata University, Niigata 951- 8520, Japa
  • Received:2007-10-25 Revised:2007-10-25 Online:2007-10-20 Published:2007-10-20
  • Contact: HU Min,Tel:0431- 88796023

Abstract:

Objective To investigate the movement tendency of lower teeth using multiloop edgewise archwire (MEAW) with vertical elastics in anterior teeth area by three- dimensions photoelastic analysis. Methods The photoelastical model of full teeth as human body on physical parameter and dimension was established and loaded by MEAW with vertical elastics in anterior teeth area similar with clinic. Every freezing model- tooth was bladed by anteroposterior axes and vertical axes, the stress of every point of alveolar bone was calculated by three - dimensions shear- equation method. The stress distribution regularity of per- tooth was analyzed to describe their move tendency. Results The lower second molar was intrused and rotated to distal and inclined as negative torque. The lower first molar moved and rotated to distal, the mesial rotate to buccally and the distal rotate to lingually. The lower second pre- molar was extruded and inclined as crown to mesial and root to distal, inclined as negative torque. The lower canine was intrused slightly and inclined as positive torque. The lower lateral incisor was extruded and moved and inclined as positive torque. Conclusion Using MEAW with several“L”loop can control the movement of every tooth in three dimension.

Key words: multiloop edgewise archwire, three- dimensions photoelastic analysis, stress distribution