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不同材料嵌体、高嵌体和全冠的微体积应力比较及其在磨牙咀嚼计算机模拟中的粘结 - 有限元分析。

A comparison of mvM stress of inlays, onlays and endocrowns made from various materials and their bonding with molars in a computer simulation of mastication - FEA.

机构信息

Department of Prosthetic Dentistry, Medical University of Łódź, Łódź, Poland.

Department of Strength of Materials and Structures, Technical University of Łódź, Łódź, Poland.

出版信息

Dent Mater. 2020 Jul;36(7):854-864. doi: 10.1016/j.dental.2020.04.007. Epub 2020 May 27.

Abstract

OBJECTIVES

The purpose of the study was to compare the mvM stresses occurring in inlays, onlays and endocrowns made from different materials and their bonding with molars in a computer simulation of mastication.

METHODS

The study was conducted using the finite elements method with contact elements. Sixteen 3D first molar models were created of a intact tooth - T; a tooth with a ceramic inlay - IN; a tooth with an onlay - ON; and a tooth with an endocrown - EN. The restorations were made of: Comp - resin nanoceramic; Hc - hybrid ceramic; Le - leucite ceramic; Dlit - lithium disilicate; and Zr - zirconia. Computer simulations of mastication were performed. The equivalent stresses according to the modified von Mises criterion (mvM) were calculated in model materials and contact stresses at the interface cement-dental tissue around the examined restorations.

RESULTS

The highest equivalent mvM stresses were concentrated in buccal margins of inlays. The mvM stresses recorded in onlays were 1.6-5 times lower than those found in inlays, while in endocrowns they were 2.3-6.5 times lower. Around the onlays and endocrowns, in tooth structures and luting cement, mvM stresses were significantly lower compared to teeth restored with inlays. The tensile and shear contact stresses between inlays and teeth were several times lower than under another restorations. The highest stresses (58.5MPa) occurred in the zirconia inlay. The stresses observed in the enamel of a tooth restored with an INZr inlay were half those noted in INComp, and a third of those observed in cement. Tensile contact stresses at the interface between the INZr inlay and dental tissue were 4.5 times lower than in the INComp, and the shear stresses were more than 7 times lower.

SIGNIFICANCE

The highest values and unfavorable of stress levels occurred in teeth restored with inlays. Cavities MOD in molars should be reconstructed with cusp-covering restorations. The endocrown in molars should withstand physiological loading. The higher the modulus of elasticity of the restoration material, the higher the stresses in the restorations, while the lower stresses were observed in the tooth structures, luting cement and at the interface between the restoration and the dental tissue. Ceramic restorations should provide better protection and marginal seal of the reconstructed tooth than composite ones.

摘要

目的

本研究旨在通过咀嚼的计算机模拟,比较不同材料制成的嵌体、高嵌体和全瓷嵌体在磨牙中的 mvM 应力,并比较其与磨牙的粘结情况。

方法

本研究采用接触单元的有限元法。创建了 16 个完整牙齿(T)、有陶瓷嵌体的牙齿(IN)、有高嵌体的牙齿(ON)和有全瓷嵌体的牙齿(EN)的三维第一磨牙模型。修复体由复合树脂纳米陶瓷(Comp-resin nanoceramic)、混合陶瓷(Hc-hybrid ceramic)、透锂长石陶瓷(Le-leucite ceramic)、锂硅二硅酸锂(Dlit-lithium disilicate)和氧化锆(Zr-zirconia)制成。进行咀嚼模拟。在模型材料和检查修复体周围牙本质组织的粘结剂界面处计算根据修正的 von Mises 准则(mvM)得出的等效应力。

结果

在嵌体的颊侧边缘,集中了最高的等效 mvM 应力。高嵌体记录的 mvM 应力比嵌体低 1.6-5 倍,而全瓷嵌体低 2.3-6.5 倍。与嵌体修复的牙齿相比,在高嵌体和全瓷嵌体周围的牙齿结构和粘结剂中,mvM 应力明显更低。嵌体与牙齿之间的拉伸和剪切接触应力比其他修复体低几倍。在氧化锆嵌体中,出现了最高的(58.5MPa)应力。用 INZr 嵌体修复的牙齿的釉质中观察到的应力是 INComp 的一半,是粘结剂的三分之一。INZr 嵌体与牙组织界面处的拉伸接触应力比 INComp 低 4.5 倍,剪切应力低 7 倍以上。

意义

在使用嵌体修复的牙齿中,出现了最高值和最不利的应力水平。磨牙 MOD 窝洞应采用牙尖覆盖修复体重建。磨牙全瓷嵌体应能承受生理负荷。修复材料的弹性模量越高,修复体中的应力越高,而牙体结构、粘结剂和修复体与牙组织界面处的应力越低。陶瓷修复体比复合树脂修复体能更好地保护和密封重建的牙齿。

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