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两种用于前磨牙和磨牙大面积MOD洞的不同短纤维增强树脂复合材料。

Two different short fiber-reinforced resin composites for extensive MOD cavities in premolars and molars.

作者信息

Oksanen Viivi, Bijelic-Donova Jasmina, Vallittu Pekka K, Lassila Lippo, Garoushi Sufyan

机构信息

Department of Biomaterials Science and Turku Clinical Biomaterial Center -TCBC, Institute of Dentistry, University of Turku, Turku, Finland.

Department of Prosthetic Dentistry and Stomatognathic Physiology Institute of Dentistry, University of Turku, Turku, Finland.

出版信息

Clin Oral Investig. 2025 Sep 17;29(10):462. doi: 10.1007/s00784-025-06562-4.

Abstract

OBJECTIVES

To assess the influence of (1) incorporating micro- and millimeter-scale short fiber-reinforced composite (SFC) on the fracture behavior of large direct restorations made in premolars (P) and molars (M); (2) tooth size on the fracture resistance and their correlation.

MATERIALS AND METHODS

Wide MOD cavities with missing lingual walls were prepared in premolars and molars. Four groups were designed (n = 15/group). Teeth in PFC group were restored with particulate filler resin composite (Gaenial Universal Injectable) without fiber reinforcement. Teeth in bilayered group were made of micrometer-scale SFC-core (everX Flow) veneered with a resin composite layer 1 mm in thickness. Monolithic SFC restorations were made either with plain SFC (everX Flow) or with plain hybrid SFC. The hybrid SFC was composed of handmade mixture of micro- and millimeter-scale SFCs (everX Flow and everX Posterior). Specimens were stored in water for 12 months before quasi-static loading. Fractures were analyzed using scanning electron microscopy. Data were statistically analyzed with two-way ANOVA (p = 0.05), followed by the Tukey HSD test. Additionally, Pearson correlation analyses (p = 0.001) were conducted.

RESULTS

Restorations in premolars exhibited statistically significant lower fracture resistance than those in molars, except for the plain SFC group (p < 0.05;r = 0.0114) (PFC P 481 ± 159 N; PFC M 1221 ± 435 N; Bilayered P 727 ± 387 N; Bilayerd M 1954 ± 517 N; SFC P 1735 ± 533 N; SFC M 1847 ± 551 N; SFC-hybrid P 1485 ± 339 N; SFC-hybrid M 2280 ± 375 N). In both, premolars and molars, the application of SFC as core or plain restorative material demonstrated superior fracture endurance compared to PFC restorations. Hybrid SFC in molars displayed significantly higher fracture resistance (p < 0.05) compared to the other groups. Pearson correlation indicated statistically significant positive correlation in favor of molars (p < 0.001;r = 0.490) (PFC r = 0.712, Bilayered r = 0.815, SFC-hybrid r = 0.767), except for the plain SFC group (r = 0.114).

CONCLUSIONS

The volume and consistency of SFC significantly impact the fracture endurance and fracture mode of direct composite restorations.

CLINICAL SIGNIFICANCE

Tooth and short fiber reinforced composite (SFC) type are factors that should be taken into account when planning the SFC restoration. Molars could be restored with any type of SFC, however gaining a high volume of plain flowable or preferably hybrid SFC in premolars is highly important.

摘要

目的

评估(1)加入微米级和毫米级短纤维增强复合材料(SFC)对前磨牙(P)和磨牙(M)中大型直接修复体断裂行为的影响;(2)牙齿大小对抗断裂性的影响及其相关性。

材料与方法

在前磨牙和磨牙上制备缺失舌壁的宽大MOD洞。设计四组(每组n = 15)。PFC组的牙齿用无纤维增强的颗粒填料树脂复合材料(Gaenial Universal Injectable)修复。双层组由微米级SFC核(everX Flow)制成,表面覆盖一层厚度为1毫米的树脂复合材料层。整体式SFC修复体由普通SFC(everX Flow)或普通混合SFC制成。混合SFC由微米级和毫米级SFC(everX Flow和everX Posterior)的手工混合物组成。标本在准静态加载前在水中保存12个月。使用扫描电子显微镜分析骨折情况。数据采用双向方差分析(p = 0.05)进行统计分析,随后进行Tukey HSD检验。此外,还进行了Pearson相关性分析(p = 0.001)。

结果

除普通SFC组外,前磨牙修复体的抗断裂性在统计学上显著低于磨牙(p < 0.05;r = 0.0114)(PFC P 481 ± 159 N;PFC M 1221 ± 435 N;双层P 727 ± 387 N;双层M 1954 ± 517 N;SFC P 1735 ± 533 N;SFC M 1847 ± 551 N;SFC - 混合P 1485 ± 339 N;SFC - 混合M 2280 ± 375 N)。在前磨牙和磨牙中,将SFC用作核心材料或普通修复材料均显示出比PFC修复体更高的抗断裂耐久性。磨牙中的混合SFC显示出比其他组显著更高的抗断裂性(p < 0.05)。Pearson相关性表明,除普通SFC组(r = 0.114)外,有利于磨牙的统计学显著正相关(p < 0.001;r = 0.490)(PFC r = 0.712,双层r = 0.815,SFC - 混合r = 0.767)。

结论

SFC的体积和一致性显著影响直接复合树脂修复体的抗断裂耐久性和断裂模式。

临床意义

在计划SFC修复时,牙齿和短纤维增强复合材料(SFC)类型是应考虑的因素。磨牙可以用任何类型的SFC修复,然而,在前磨牙中获得大量普通可流动或优选混合的SFC非常重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cf23/12443927/77b6eb45cdbf/784_2025_6562_Fig1_HTML.jpg

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