Biomechanical performance of post-and-cores of polyetheretherketone and its composites.

IF 2.6 2区 医学 Q1 DENTISTRY, ORAL SURGERY & MEDICINE
Biyao Wang, Minghao Huang, Kaige Zhang, Yan Xu, Xinwen Zhang, Liye Shi, Xu Yan
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引用次数: 0

Abstract

Background: Polyetheretherketone (PEEK) and its fiber-reinforced composites have been indicated as ideal post-and-cores materials due to its mechanical properties. However, the laboratory evidences of post-and-cores restored with fiber-reinforced PEEK are lacking.

Materials and methods: A total of 120 extracted mandibular premolars were treated endodontically and divided into six groups restored with different post-and-core materials (N = 20): (1) prefabricated quartz fiber-reinforced composite (QFRC), (2) polymer-infiltrated ceramic (PIC), (3) cobalt chromium (CoCr), (4) PEEK, (5) 30% glass fiber-reinforced PEEK (GFR-PEEK), and (6) 30% carbon fiber-reinforced PEEK (CFR-PEEK). Stress distribution was analyzed by finite element analysis (FEA). Then, each group was then divided into two subgroups (n = 10): static loading test and fatigue loading test. The static failure load (SFL) was analyzed by one-way analysis of variance (ANOVA) with least-significant difference (LSD) multiple comparison tests. The fatigue failure load (FFL) and cycles for failure (CFF) were evaluated by Kaplan-Meier survival analysis (P < 0.05).

Results: Groups PEEK, GFR-PEEK, and CFR-PEEK exhibited lower maximum peak principal stress and better stress distribution than Group CoCr. The SFL of Groups PEEK and QFRC did not differ from each other, and both were lower than those of Groups CoCr, GFR-PEEK, and CFR-PEEK. In the fatigue loading test, Group CoCr exhibited the best survival; however, with the progression of fatigue, the survival probabilities of Groups PEEK and its composites were close to that of Group CoCr. In all groups apart from Group CoCr, the rate of repairable failure modes was higher than that of irreparable ones.

Conclusions: Customized post-and-cores manufactured with PEEK and its fiber-reinforced composites showed superior biomechanical performance, making them potential alternatives for the restoration of massive tooth defects.

Clinical relevance: This study provides a theoretical basis for clinicians to select post-and-core materials for different root canal morphology residual roots and helps to reduce the occurrence of complications such as root fracture and post core debonding.

聚醚醚酮及其复合材料桩芯生物力学性能研究。
背景:聚醚醚酮(PEEK)及其纤维增强复合材料因其良好的力学性能而被认为是理想的桩芯材料。然而,纤维增强PEEK修复桩核的实验室证据缺乏。材料与方法:对120颗拔除的下颌前磨牙进行根管治疗,分为6组(N = 20),采用不同桩核材料修复:(1)预制石英纤维增强复合材料(QFRC),(2)聚合物渗透陶瓷(PIC),(3)钴铬(CoCr), (4) PEEK,(5) 30%玻璃纤维增强PEEK (GFR-PEEK),(6) 30%碳纤维增强PEEK (CFR-PEEK)。采用有限元分析方法对其应力分布进行分析。然后,每组再分为两个子组(n = 10):静加载试验和疲劳加载试验。静态失效负荷(SFL)采用单因素方差分析(ANOVA)和最小显著差异(LSD)多重比较检验进行分析。采用Kaplan-Meier生存分析(P)评估疲劳失效载荷(FFL)和失效循环次数(CFF)。结果:PEEK组、GFR-PEEK组和CFR-PEEK组的最大峰值主应力低于CoCr组,应力分布更好。PEEK和QFRC组的SFL无显著差异,均低于CoCr、GFR-PEEK和CFR-PEEK组。疲劳载荷试验中,CoCr组的存活率最高;然而,随着疲劳的进展,PEEK组及其复合材料的存活概率与CoCr组接近。除CoCr组外,各组可修复故障模式的发生率均高于不可修复故障模式的发生率。结论:PEEK及其纤维增强复合材料的定制桩核具有良好的生物力学性能,是修复牙齿大面积缺损的潜在选择。临床意义:本研究为临床医生针对不同根管形态残根选择桩核材料提供了理论依据,有助于减少根管断裂、桩核脱粘等并发症的发生。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
BMC Oral Health
BMC Oral Health DENTISTRY, ORAL SURGERY & MEDICINE-
CiteScore
3.90
自引率
6.90%
发文量
481
审稿时长
6-12 weeks
期刊介绍: BMC Oral Health is an open access, peer-reviewed journal that considers articles on all aspects of the prevention, diagnosis and management of disorders of the mouth, teeth and gums, as well as related molecular genetics, pathophysiology, and epidemiology.
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