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正畸托槽与各种美学桥体材料黏结的抗剪粘结强度。

Shear bond strength of orthodontic brackets bonded to various esthetic pontic materials.

机构信息

Resident, Tri-Service Orthodontic Residency Program, Wilford Hall Medical Center, Lackland Air Force Base, San Antonio, Tex, USA.

出版信息

Am J Orthod Dentofacial Orthop. 2010 May;137(5):684-9. doi: 10.1016/j.ajodo.2008.06.031.

Abstract

INTRODUCTION

In this in-vitro study, we compared the shear bond strengths of orthodontic brackets bonded to various commonly used esthetic pontic materials.

METHODS

Prefabricated denture teeth (acrylic resin, Trubyte, Dentsply, York, Pa) and samples made from Integrity (bis-acryl composite resin, Dentsply Caulk, Milford, Del) and Alike (polymethylmethacrylate resin, GC America, Alsip, Ill) were used to represent the more common esthetic provisional materials. Each material group contained 30 samples; a total of 90 samples were bonded in the same fashion with APC PLUS maxillary lateral incisor brackets (3M Unitek, Monrovia, Calif). Each material group was then divided into 2 testing subgroups. One subgroup was tested for shear bond strength 24 hours after bonding, and the other subgroup was tested after bonding and storage in distilled water at 37 degrees C for a week. Each bracket was loaded perpendicularly in a universal testing machine at a crosshead speed of 1.0 mm per minute until bonding failure. The mean shear bond strength and standard deviation were determined for each group. Analysis of variance (ANOVA, 2-factor and 1-factor) with Tukey HSD post-hoc tests, Student t tests, and Mann-Whitney U tests were used to test the main effects of pontic materials and time of loading (alpha = 0.05). The data were stratified, and 1-way ANOVA tests were performed with the Bonferroni adjustment (alpha = 0.01) to examine the effect of the pontic material on shear bond strength after either 1 day or 7 days of storage.

RESULTS

Significant differences were found based on pontic material and time (P <0.05), but there was a significant interaction (P = 0.044), making the results uninterpretable. At 1 day, the Integrity material had a significantly higher mean shear bond strength than both Alike and the denture tooth materials (P <0.001). However, at 7 days, both Integrity and Alike had significantly higher mean shear bond strengths compared with the prefabricated denture tooth (P <0.001).

CONCLUSIONS

Although the use of Integrity or Alike requires an additional armamentarium, necessitating individual pontic fabrication by the dental practitioner, indications for clinical use are evident with direct applications to multi-disciplinary treatment modalities.

摘要

介绍

本体外研究比较了正畸托槽与各种常用美学桥体材料的粘结强度。

方法

预制义齿牙(丙烯酸树脂,Trubyte,登士柏,约克,PA)和 Integrity(双丙烯酸复合树脂,登士柏 Caulk,米尔福德,DE)和 Alike(聚甲基丙烯酸甲酯树脂,GC 美国,Alsip,IL)制成的样本用于代表更常见的美学临时材料。每个材料组包含 30 个样本;总共 90 个样本以相同的方式用 APC PLUS 上颌侧切牙托槽(3M Unitek,蒙罗维亚,加利福尼亚州)粘结。每个材料组随后分为 2 个测试亚组。一个亚组在粘结后 24 小时进行剪切粘结强度测试,另一个亚组在粘结后和在 37°C 蒸馏水中储存一周后进行测试。每个托槽以 1.0 毫米/分钟的十字头速度垂直加载在万能试验机中,直到粘结失效。确定每个组的平均剪切粘结强度和标准偏差。使用方差分析(ANOVA,2 因素和 1 因素)与 Tukey HSD 事后检验、学生 t 检验和 Mann-Whitney U 检验来检验桥体材料和加载时间的主要影响(α=0.05)。对数据进行分层,使用 Bonferroni 调整(α=0.01)进行 1 -way ANOVA 检验,以检查桥体材料在 1 天或 7 天储存后对剪切粘结强度的影响。

结果

基于桥体材料和时间发现了显著差异(P<0.05),但存在显著的相互作用(P=0.044),使得结果无法解释。第 1 天,Integrity 材料的平均剪切粘结强度显著高于 Alike 和义齿材料(P<0.001)。然而,第 7 天,Integrity 和 Alike 的平均剪切粘结强度均显著高于预制义齿(P<0.001)。

结论

虽然使用 Integrity 或 Alike 需要额外的设备,需要牙科医生进行单独的桥体制作,但临床应用的指征明显,可直接应用于多学科治疗模式。

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