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咀嚼模拟后氧化锆基台预备对单颗种植体二硅酸锂全冠断裂强度的影响

Influence of zirconia abutment preparation on the fracture strength of single implant lithium disilicate crowns after chewing simulation.

作者信息

Mitsias Miltiadis, Koutayas Spiridon-Oumvertos, Wolfart Stefan, Kern Matthias

机构信息

Department of Prosthodontics, Propaedeutics and Dental Materials, School of Dentistry Christian-Albrechts University at Kiel, Kiel, Germany; Private Practice, Athens, Greece.

出版信息

Clin Oral Implants Res. 2014 Jun;25(6):675-82. doi: 10.1111/clr.12058. Epub 2012 Oct 29.

Abstract

OBJECTIVE

The use of all-ceramic crowns over zirconia abutments is a well-established esthetic treatment option in implant dentistry; however, the effect of the mechanical processing due to abutment preparation has not been investigated under functional loading. The purpose of the study was to evaluate the influence of the zirconia abutment preparation depth and preparation mode on the fracture strength and fracture mode of lithium disilicate crowns after chewing simulation.

MATERIAL AND METHODS

Seventy single implant-supported lithium disilicate glass-ceramic crowns (IPS e.max Press, Ivoclar Vivadent) were adhesively cemented (Multilink Automix, Ivoclar Vivadent) onto zirconia abutments (ZirDesign, Astra Tech) using implants with a diameter of 4.5 mm and a length of 15.0 mm (Osseospeed, Astra Tech). Study design concerned the replacement of a maxillary central incisor (11.0 mm in height and 8.0 mm in width). Subgroups (n = 7) were subjected to dynamic loading (C) up to 1.2 × 10(6) loading cycles at 135° with 98N in a thermomechanical chewing simulator (Kausimulator, Willytech); followed by quasi-static loading at a cross-head speed of 0.5 mm/min until fracture in a universal testing machine (Z010/TN2S, Zwick). Additional subgroups were also subjected to quasi-static loading (S) at 135°. Lithium disilicate implant crowns were divided into five study groups (n = 14) according to the abutment preparation depth [A (control): 0.5 mm, B: 0.7 mm, C: 0.9 mm, and preparation mode [(No label): milling by the manufacturer, (P): copy-milling by the Celay System (Mikrona)].

RESULTS

All specimens survived dynamic loading and mean fracture strengths (N) after quasi-static loading were as follows: Group SA: 384 ± 84; Group CA: 403 ± 67; Group SB: 294 ± 95; Group CB: 374 ± 75; Group SC: 332 ± 52; Group CC: 373 ± 105; Group SPB: 332 ± 80; Group CPB: 499 ± 91; Group SPC: 380 ± 101; and Group CPC: 358 ± 54.

CONCLUSIONS

Statistical analysis using multiple linear regression showed that both the preparation depth and mode had no influence on the fracture strength of the implant crowns (P > 0.05); however, fracture strength increased statistically significantly after 5 years chewing simulation (P = 0.01).

摘要

目的

在种植修复领域,氧化锆基台上使用全瓷冠是一种成熟的美学治疗方案;然而,基台预备过程中的机械加工效应在功能载荷下尚未得到研究。本研究旨在评估氧化锆基台预备深度和预备方式对模拟咀嚼后二硅酸锂全瓷冠的断裂强度及断裂模式的影响。

材料与方法

七十颗单颗种植支持的二硅酸锂玻璃陶瓷全瓷冠(IPS e.max Press,义获嘉伟瓦登特公司)通过粘接剂(Multilink Automix,义获嘉伟瓦登特公司)粘固于氧化锆基台(ZirDesign,阿斯利康公司)上,种植体直径4.5mm,长度15.0mm(Osseospeed,阿斯利康公司)。研究设计为上颌中切牙的修复替代(牙冠高度11.0mm,宽度8.0mm)。各亚组(n = 7)在热机械咀嚼模拟器(Kausimulator,威利泰克公司)中于135°角以98N进行动态加载(C),加载循环次数达1.2×10⁶次;随后在万能材料试验机(Z010/TN2S,德国zwick公司)中以0.5mm/min的十字头速度进行准静态加载直至断裂。另外的亚组也在135°角进行准静态加载(S)。根据基台预备深度,二硅酸锂种植全瓷冠分为五个研究组(n = 14)[A(对照组):0.5mm,B:0.7mm,C:0.9mm],以及预备方式[(无标签):厂家铣削,(P):Celay系统(米克朗公司)复制铣削]。

结果

所有试件均通过动态加载测试,准静态加载后的平均断裂强度(N)如下:SA组:384±84;CA组:403±67;SB组:294±95;CB组:374±75;SC组:332±52;CC组:3

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