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边缘设计对高透明度全瓷氧化锆冠折裂强度的影响。

Effect of Marginal Designs on Fracture Strength of High Translucency Monolithic Zirconia Crowns.

作者信息

Juntavee Niwut, Kornrum Sasiprapa

机构信息

Department of Prosthodontics, Faculty of Dentistry, Khon Kaen University, Khon Kaen 40002, Thailand.

Division of Biomaterials and Prosthodontics Research, Faculty of Dentistry, Khon Kaen University, Khon Kaen 40002, Thailand.

出版信息

Int J Dent. 2020 Aug 3;2020:8875609. doi: 10.1155/2020/8875609. eCollection 2020.

Abstract

INTRODUCTION

Monolithic zirconia is able to achieve certain aesthetic, but its durability in resisting fracture has been questioned, as fractures often originate from margins of restoration. This study determined fracture resistance of highly translucent monolithic zirconia crowns with different margin designs in terms of marginal thickness and collar height.

MATERIALS AND METHODS

Zirconia blanks (Ceramill® Zolid HT) were selected for the fabrication of zirconia crowns according to different designs, including varying margin thicknesses (light chamfer, C; heavy chamfer, C) and collar heights (no collar, N; low collar, L; high collar, H), which resulted in CN, CL, CH, CN, CL, and CH groups (15 crowns each). The crowns were seated on a metal die and loaded vertically through round end punch ( = 10 mm), contacting with inclined planes of cusp in a testing machine with crosshead speed of 0.2 mm/min until fracture. Videos with a rate of 50 frames/second were used to record fracture. Fracture load (N) and durable period (s) were compared for significant differences using ANOVA and Bonferroni test (  ).

RESULTS

The mean ± sd of fracture load (N) and durable time (s) were 3211 ± 778 and 212 ± 47 for CN; 3041 ± 1370 and 188 ± 53 for CL; 2913 ± 828 and 192 ± 27 for CH; 4226 ± 905 and 245 ± 35 for CN; 4486 ± 807 and 228 ± 29 for CL; and 4376 ± 1043 and 227 ± 37 for CH. This indicated that marginal thickness had a significant influence on load-bearing capacity and durable time ( < 0.05). No significant impact of collar height was shown, either on load-bearing capacity or durable time ( > 0.05). No interaction between two factors was presented ( > 0.05).

CONCLUSIONS

Heavy chamfer margin provided stronger zirconia crown than light chamfer, but both were capable of withstanding fracture load higher than maximum masticatory force. Neither presence nor absence of collar indicated any impact on strength. Fabrication of zirconia crowns with either heavy or light chamfer margin and either presence or absence of collar, with the consideration of emergence profile, should be considered.

摘要

引言

整体式氧化锆能够实现一定的美观性,但其抗断裂耐久性受到质疑,因为骨折往往起源于修复体边缘。本研究确定了具有不同边缘设计的高透明度整体式氧化锆冠在边缘厚度和边缘高度方面的抗断裂性。

材料与方法

根据不同设计选择氧化锆坯料(Ceramill® Zolid HT)制作氧化锆冠,包括不同的边缘厚度(浅凹面,C;深凹面,C)和边缘高度(无边缘,N;低边缘,L;高边缘,H),从而形成CN、CL、CH、CN、CL和CH组(每组15个冠)。将冠放置在金属模具上,并通过圆形端部冲头(直径 = 10 mm)垂直加载,在十字头速度为0.2 mm/min的试验机中与牙尖斜面接触,直至断裂。以50帧/秒的速率拍摄视频记录断裂过程。使用方差分析和Bonferroni检验(α = 0.05)比较断裂载荷(N)和持续时间(s)的显著差异。

结果

CN组的断裂载荷(N)和持续时间(s)的平均值±标准差分别为3211±778和212±47;CL组为3041±1370和188±53;CH组为2913±828和192±27;CN组为4226±905和245±35;CL组为4486±807和228±29;CH组为4376±1043和227±37。这表明边缘厚度对承载能力和持续时间有显著影响(P < 0.05)。边缘高度对承载能力或持续时间均无显著影响(P > 0.05)。两因素之间无交互作用(P > 0.05)。

结论

深凹面边缘的氧化锆冠比浅凹面边缘的更强,但两者都能够承受高于最大咀嚼力的断裂载荷。边缘的有无对强度均无影响。在考虑外形的情况下,应考虑制作具有深凹面或浅凹面边缘且有无边缘的氧化锆冠。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3747/7421695/aa79047e7296/IJD2020-8875609.001.jpg

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