Shanghai Journal of Stomatology ›› 2013, Vol. 22 ›› Issue (4): 384-388.

• Basic Study • Previous Articles     Next Articles

Dynamic analysis of the rigid fixed bridge and related tissue after intrusion of abutment with micro screw implant

ZHU Lin1, XU Pei-cheng1, LU Liu-lei2   

  1. 1.Dental Center, Shanghai Xuhui District. Shanghai 200032; 2.Department of Mechanics and Civil Engineering, Engineering College, Jinan University. Guangzhou 510632, Guangdong Province, China
  • Received:2013-04-19 Revised:2013-05-22 Online:2013-08-10 Published:2013-08-10
  • Supported by:
    Supported by Research Fund of Science and Technology Plan Project from Bureau of Health, Shanghai Municipality (2009258).

Abstract: PURPOSE: To study the variety of mechanical behavior of fixed bridge after abutments being intruded by micro screw implant and to provide theoretical principles for clinical practice of teeth preparation after intrusion of abutments under dynamic loads. METHODS: Two-dimensional images of maxilla, teeth and supporting tissues of healthy people were scanned by spiral CT and were synthesized by Mimics10.01, Ansys13.0, etc. The three-dimensional finite element mathematical model of rigid fixed bridge repairing on double end of maxillary molar was developed. Under the condition of 10% simulative abutment alveolar absorption, vertical and oblique dynamic forces were applied in a circle of mastication(0.875 s) to build mathematical model after the abutment had been intruded for 0.5, 1.0, 1.5 and 2.0 mm. Stress variety of prosthesis, teeth, periodontal ligaments and supporting tissues were compared before and after intrusion of abutments. RESULTS: Stress variety of the prosthesis occurred, which had close relationship with the structure of prosthesis and teeth, the areas of periodontal ligaments increased, stress on the whole decreased along with the increase of the length of intrusion. With time accumulating, the stress value in prosthesis, teeth, periodontal ligaments and supporting tissues increased gradually and loads in oblique direction induced peak value stress in a masticatory cycle. Some residual stress left after unloading. CONCLUSIONS: By preparing the fixed bridge after abutment intrusion by micro screw implant, the service life of abutment and fixed bridge prosthesis can be reduced. The abutment and its related tissue have time-dependent mechanical behaviors during one mastication. The influence of oblique force on stress was greater than vertical force. There is some residual stress left after one mastication period. With the increase of the intrusion on abutment, residual stress reduced.

Key words: Abutment, Periodontal ligament, Fixed bridge, Dynamic analysis

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