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分层是否能将复合树脂修复体中的收缩应力降至最低?

Does layering minimize shrinkage stresses in composite restorations?

作者信息

Kuijs R H, Fennis W M M, Kreulen C M, Barink M, Verdonschot N

机构信息

(PCT 117) Department of Preventive and Community Dentistry and Pedodontology, University Medical Centre Nijmegen, PO Box 9101, 6500 HB Nijmegen, The Netherlands.

出版信息

J Dent Res. 2003 Dec;82(12):967-71. doi: 10.1177/154405910308201206.

Abstract

Polymerization shrinkage of resin composites may impair restoration longevity. It is hypothesized that layering, rather than bulk, techniques result in less stress in the tooth-restoration complex. The aim of this study was to compare shrinkage stresses for different restorative techniques used for cusp-replacing restorations with direct resin composite. In a 3-D FE model, the dynamic process of shrinkage during polymerization was simulated. Time-dependent parameters (shrinkage, apparent viscosity, Young's modulus, Poisson ratio, and resulting creep), which change during the polymerization process, were implemented. Six different restorative procedures were simulated: a chemically cured bulk technique, a light-cured bulk technique, and 4 light-cured layering techniques. When polymerization shrinkage is considered, a chemically cured composite shows the least resulting stress. The differences seen among various layering build-up techniques were smaller than expected. The results indicate that the stress-bearing locations are the interface and the cervical part of the remaining cusp.

摘要

树脂复合材料的聚合收缩可能会损害修复体的使用寿命。据推测,分层技术而非整体技术会使牙齿-修复体复合体中的应力更小。本研究的目的是比较用于直接树脂复合材料尖牙替代修复的不同修复技术的收缩应力。在一个三维有限元模型中,模拟了聚合过程中收缩的动态过程。采用了在聚合过程中会发生变化的随时间变化的参数(收缩率、表观粘度、杨氏模量、泊松比以及由此产生的蠕变)。模拟了六种不同的修复程序:化学固化整体技术、光固化整体技术和四种光固化分层技术。考虑聚合收缩时,化学固化复合材料产生的应力最小。各种分层堆积技术之间的差异比预期的要小。结果表明,应力承受部位是剩余牙尖的界面和颈部。

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