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解剖学形态正确的全瓷牙冠系统结构的生物力学评估:纳入临床相关变量的核心层多变量分析

Biomechanical evaluation of an anatomically correct all-ceramic tooth-crown system configuration: core layer multivariate analysis incorporating clinically relevant variables.

作者信息

Rafferty Brian T, Bonfante Estevam A, Janal Malvin N, Silva Nelson R F A, Rekow Elizabeth D, Thompson Van P, Coelho Paulo G

机构信息

Department of Biomaterials and Biomimetics, New York University, New York, NY 10010, USA.

出版信息

J Biomech Eng. 2010 May;132(5):051001. doi: 10.1115/1.4001046.

Abstract

In a crown system, core fracture requires replacement of the restoration. Understanding maximum principal stress concentration in the veneered core of a tooth-crown system as a function of variations in clinically relevant parameters is crucial in the rational design of crown systems. This study evaluated the main and interacting effects of a set of clinical variables on the maximum principal stress (MPS) in the core of an anatomically correct veneer-core-cement-tooth model. A 3D CAD model of a mandibular first molar crown was generated; tooth preparation was modeled by reducing the proximal walls by 1.5 mm and the occlusal surface by 2.0 mm. A cemented veneered core crown was modeled on the preparation. This "crown system" permitted finite element model investigation of the main and interacting effects of proximal wall height reduction, core material, core thickness, cement modulus, cement thickness, and load position on the maximum stress distribution in a factorial design. Analysis of variance was used to identify the main and interacting influences on the level of MPS in the crown core. Statistical significance was set at p<0.05. MPS levels varied as a function of two-way interactions between the following: core thickness and load position; cement thickness and load position; cement modulus and load position; cement thickness and core thickness; and cement thickness and cement modulus; and also three-way interactions among the load position, core material, and proximal wall height reduction, and among the core thickness, cement thickness, and cement modulus. MPS in the crown-tooth system is influenced by the design parameters and also by the interaction among them. Hence, while the geometry of molar crowns is complex, these analyses identify the factors that influence MPS and suggest levels that will minimize the core MPS in future studies of crown design.

摘要

在牙冠系统中,核部折裂需要更换修复体。了解牙冠系统烤瓷核中最大主应力集中随临床相关参数变化的情况,对于牙冠系统的合理设计至关重要。本研究评估了一组临床变量对解剖学上正确的烤瓷 - 核 - 粘结剂 - 牙齿模型核部最大主应力(MPS)的主要影响和交互作用。生成了下颌第一磨牙牙冠的三维CAD模型;通过将近端壁减少1.5毫米和咬合面减少2.0毫米来模拟牙体预备。在该预备体上模拟了粘结的烤瓷核冠。这个“牙冠系统”允许在析因设计中对近端壁高度降低、核材料、核厚度、粘结剂模量、粘结剂厚度和载荷位置对最大应力分布的主要影响和交互作用进行有限元模型研究。采用方差分析来确定对牙冠核中MPS水平的主要影响和交互作用。设定统计学显著性为p<0.05。MPS水平随以下因素之间的双向相互作用而变化:核厚度和载荷位置;粘结剂厚度和载荷位置;粘结剂模量和载荷位置;粘结剂厚度和核厚度;以及粘结剂厚度和粘结剂模量;还随载荷位置、核材料和近端壁高度降低之间以及核厚度、粘结剂厚度和粘结剂模量之间的三向相互作用而变化。牙冠 - 牙齿系统中的MPS受设计参数及其之间的相互作用影响。因此,虽然磨牙牙冠的几何形状复杂,但这些分析确定了影响MPS的因素,并为未来牙冠设计研究中使核部MPS最小化的水平提供了建议。

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