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人工牙排列位置对下颌全口义齿固位及支持组织的影响
引用本文:董研 骆小平. 人工牙排列位置对下颌全口义齿固位及支持组织的影响[J]. 华西口腔医学杂志, 1997, 15(4): 0-311
作者姓名:董研 骆小平
作者单位:第四军医大学口腔医学琮修复学教研室
摘    要:
采用CT-数字化仪-CAD系统建立了下颌无牙颌骨及其义齿的3个三维有限元模型,探讨在He力,口周肌力作用下,下颌人工牙排列位置对义齿固位和支持组织应力分布的影响,并测量了10例口周肌动力及传统型全口义 工牙排列位置的差异。结果表明;He力作用下,人工牙排列干剩余牙槽嵴顶及水平偏离槽嵴顶舌,颊侧3mm,对牙骨应力分布无明显影响,但后牙位于下颌骨外斜嵴区对支持组织有利;正中He时,磨牙排列于牙槽嵴顶颊

关 键 词:人工牙排列  下颌全口义齿  固位  应力  有限元分析
收稿时间:1997-08-25

The Influence of Teeth Positions to Lower Complete Denture Retention and Health of Supporting Tissues
Y Dong,X Luo,Y Wang. The Influence of Teeth Positions to Lower Complete Denture Retention and Health of Supporting Tissues[J]. West China journal of stomatology, 1997, 15(4): 0-311
Authors:Y Dong  X Luo  Y Wang
Affiliation:Stomatological College, the Fourth Military Medical University, China.
Abstract:
Three kinds of three dimension finite element models of edentulous mandibile and the complete denture were established to investigate the influence of artificial teeth positions to denture retention and the supporting tissue. Ten myodynamic and traditional complete dentures were constructed to compare the difference of artificial teeth positions to alveolar ridge. The results indicated: 1. The stress was not obvious different in mandible when teeth were placed over the crest of the ridge or moved lingually or buccally to the ridge in 3 mm; 2. Under occlusion force, it was beneficial for the lower supporting tissue with artificial molars being placed over the slope of mandible and beneficial for denture retention with molars teeth being placed on the crest of ridge buccally; 3. With the effects of oral muscles, the teeth on the crest of ridge buccally or lingually in 3 mm in molar and premolar regions were respectively available; 4. There were obvious difference in arch width of artificial teeth arrangement between traditional and myodynamic complete dentures, the arch was wider in myodynamic complete denture than that of traditional complete denture at molar region.
Keywords: artificial teeth arrangement lower complete denture retention stress finite element analysis  
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