A STRESS-ANALYSIS OF THE PERIODONTAL-LIGAMENT UNDER VARIOUS ORTHODONTIC LOADINGS

被引:82
作者
MCGUINNESS, NJP
WILSON, AN
JONES, ML
MIDDLETON, J
机构
[1] Dental School, Cardiff
[2] University College, Swansea
关键词
D O I
10.1093/ejo/13.3.231
中图分类号
R78 [口腔科学];
学科分类号
1003 ;
摘要
The accurate modelling of teeth under orthodontic load in the laboratory has many shortcomings in that it has not been possible to integrate methods, such as three-dimensional models, photo-elastic stress analysis, laser holographic interferometry, and animal studies, to give comprehensive and repeatable results. In this study, using a three-dimensional finite element model of a human maxillary canine tooth, the maximum principal stresses in the periodontal ligament produced by various orthodontic forces were determined. 1 Newton tipping forces produced stresses at the cervical margin of the periodontal ligament as high as 0.196 N/mm2 and apical stresses up to - 0.034 N/mm2, while rotatory forces of two equal, but opposing forces of 0.5 Newton at the cervical margin of the crown produced cervical margin stresses ranging between - 0.035 and 0.051 N/mm2, and apical stresses of between 0.0018 and 0.0027 N/mm2. These stresses are examined and discussed in relation to previous clinical, laboratory, and histological studies.
引用
收藏
页码:231 / 242
页数:12
相关论文
共 49 条
[1]  
Aird J.C., Millett D.T., Sharpies K., Fracture of polycarbonate brackets a related photoelastic stress analysis, British Journal of Orthodontics, 15, pp. 87-92, (1988)
[2]  
Baumrind S., A reconsideration of the ‘pressure-tension’ hypothesis, American Journal of Orthodontics, 55, pp. 12-22, (1969)
[3]  
Bench R., Gugino C.F., Hilgers J.J., Bioprogressive Therapy part 6—Forces used in Bioprogressive Therapy, Journal of Clinical Orthodontics, 12, pp. 123-139, (1978)
[4]  
Bonfield W.C., Datta P.K., Young’s modulus of compact bone, Journal of Biomechanics, 7, pp. 147-149, (1974)
[5]  
Bowley W.W., Burstone C., Koenig H.A., Siatkowski R., Prediction of Tooth Displacement Using Laser Holography and Finite Element Technique, pp. 241-273, (1974)
[6]  
Burstone C.J., Pryputniewicz R.J., Holographic determination of centres of rotation produced by orthodontic forces, American Journal of Orthodontics, 77, pp. 396-409, (1980)
[7]  
Caputo A., Chaconas S.J., Hayashi R.K., Photoelastic visualisation of orthodontic forces during canine retraction, American Journal of Orthodontics, 65, pp. 250-259, (1974)
[8]  
Desai C.S., Abel J.F., Introduction to the Finite Element Method, (1972)
[9]  
Gabel A.B., A mathematical analysis of the function of the fibres of the periodontal membrane, Journal of Perio- Dontology, 27, pp. 191-198, (1956)
[10]  
Gianelli A.A., Force-induced changes in the vascularity of the periodontal ligament, American Journal of Orthodontics, 55, pp. 5-11, (1969)