West China Journal of Stomatology

Previous Articles     Next Articles

Thr ee- dimensional str ess analysis of per iodontal ligament of mandible incisor s fixed br idge abutments under dynamic loads by finite element method

MA Da1, TANG Liang2, PAN Yan - huan3   

  1. 1. Dept. of Prosthetics, Guanghua Graduate School of Stomatology, Sun Yat- Sen University, Guangzhou 510060, China;2. Dept. of Stomatology, Medical College, Jinan University, Guangzhou 510632, China; 3. Dept. of Mechanics and Civil Engineering, Engineering College, Jinan University, Guangzhou 510632, China
  • Received:2007-12-25 Revised:2007-12-25 Online:2007-12-20 Published:2007-12-20
  • Contact: TANG Liang,Tel:13500018719

Abstract:

Objective Three- dimensional finite method was used to analyze stress and strain distributions of periodontal ligament of abutments under dynamic loads. Methods Finite element analysis was performed on the model under dynamic loads with vertical and oblique directions. The stress and strain distributions and stress- time curves were analyzed to study the biomechanical behavior of periodontal ligament of abutments. Results The stress and strain distributions of periodontal ligament under dynamic load were same with the static load. But the maximum stress and strain decreased apparently. The rate of change was between 60%- 75%. The periodontal ligament had time- dependent mechanical behaviors. Some level of residual stress in periodontal ligament was left after one mastication period. The stress- free time under oblique load was shorter than that of vertical load. Conclusion The maximum stress and strain decrease apparently under dynamic loads. The periodontal ligament has time- dependent mechanical behaviors during one mastication. There is some level of residual stress left after one mastication period. The level of residual stress is related to the magnitude and the direction of loads. The direction of applied loads is one important factor that affected the stress distribution and accumulation and release of abutment periodontal ligament.

Key words: fixed bridge, periodontal ligament, finite element method, dynamic analysis, stress, strain