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低聚合收缩复合树脂:对不利 C 因素腔密封能力的影响。

Low shrinkage composite resins: influence on sealing ability in unfavorable C-factor cavities.

机构信息

Department of Dental Materials, School of Dentistry, Federal University of Pará, Belém, PA, Brazil.

出版信息

Braz Oral Res. 2011 Jan-Feb;25(1):5-12. doi: 10.1590/s1806-83242011000100002.

DOI:10.1590/s1806-83242011000100002
PMID:21359445
Abstract

The present investigation observed the sealing ability of low shrinkage composite resins in large and deep cavities, placed and photocured in one increment. Large, deep cavities (5.0 mm diameter and 2.5 mm deep) surrounded by enamel were prepared in bovine teeth, which were then divided into five groups. Groups 1, 2, 3 and 4: acid conditioning + Adper Single Bond (3M/ESPE, St Paul, MN, USA) and restoration with Aelite LS Posterior (BISCO Inc. Schaumburg, IL, USA) (G1); Filtek Z-350 (3M/ESPE,St Paul, MN, USA) (G2); Filtek Z-350 Flow (3M/ESPE, St Paul, MN, USA) (G3); Premisa (KERR Corporation, Orange, CA, USA) (G4). Group 5: Silorane Adhesive system (3M/ESPE, St Paul, MN, USA) + restoration with Filtek Low Shrinkage Posterior P90 (3M/ESPE, St Paul, MN, USA). After polymerization, the teeth were immersed in 0.5% basic fuchsine solution and immediately washed. Using the Imagetool Software, the extent of dye along the margins was calculated as a percentage of total perimeter. The restorations were then transversally sectioned and the depth of dye penetration was calculated in mm, using the same software. Kruskal-Wallis analysis for all groups showed no statistical differences for extent (p = 0.54) or depth (p = 0.8364) of dye penetration. According to this methodology, the so-called low shrinkage composite resins had the same sealing ability compared to regular and flowable nanocomposite materials.

摘要

本研究观察了在一个增量中放置和光固化的小收缩复合树脂在大而深的窝洞中的密封能力。在牛牙中制备了直径为 5.0 毫米、深度为 2.5 毫米的大而深的窝洞,窝洞周围为釉质,然后将其分为五组。组 1、2、3 和 4:酸蚀处理+Adper Single Bond(3M/ESPE,明尼苏达州圣保罗)和 Aelite LS Posterior(BISCO Inc.,伊利诺伊州绍姆堡)修复(G1);Filtek Z-350(3M/ESPE,明尼苏达州圣保罗)(G2);Filtek Z-350 Flow(3M/ESPE,明尼苏达州圣保罗)(G3);Premisa(KERR Corporation,加利福尼亚州奥兰治)(G4)。第 5 组:Silorane 粘结剂系统(3M/ESPE,明尼苏达州圣保罗)+Filtek 低收缩后牙 P90(3M/ESPE,明尼苏达州圣保罗)修复。聚合后,将牙齿浸入 0.5%碱性品红溶液中,并立即冲洗。使用 Imagetool 软件,计算边缘处染料的延伸程度,以总周长的百分比表示。然后,使用相同的软件,将修复体横向切片,并计算染料渗透的深度(mm)。对所有组进行 Kruskal-Wallis 分析,结果显示染料渗透的程度(p=0.54)或深度(p=0.8364)均无统计学差异。根据该方法,与常规和流动性纳米复合树脂材料相比,所谓的低收缩复合树脂具有相同的密封能力。

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Evaluation of bond strength of silorane and methacrylate based restorative systems to dentin using different cavity models.
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J Appl Oral Sci. 2013 Sep-Oct;21(5):452-9. doi: 10.1590/1679-775720130120.
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Effect of cavity configuration (C factor) on the marginal adaptation of low-shrinking composite: a comparative ex vivo study.窝洞形态(C因子)对低收缩复合树脂边缘适应性的影响:一项体外比较研究。
Int J Dent. 2011;2011:159749. doi: 10.1155/2011/159749. Epub 2011 Sep 19.