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改善正畸粘结与银汞合金的结合。

Improving orthodontic bonding to silver amalgam.

作者信息

Zachrisson B U, Büyükyilmaz T, Zachrisson Y O

机构信息

Department of Orthodontics, University of Oslo, Norway.

出版信息

Angle Orthod. 1995;65(1):35-42. doi: 10.1043/0003-3219(1995)065<0035:IOBTSA>2.0.CO;2.

Abstract

Flat rectangular tabs (n = 84) prepared from lathe-cut amalgam (ANA 2000) were subjected to aluminum oxide sandblasting or roughening with a diamond bur. Mandibular incisor edgewise brackets were bonded to these tabs using: Concise (Bis-GMA resin); one of three metal-bonding adhesives, viz., Superbond C&B (4-META resin), Panavia Ex (10-MDP Bis-GMA resin) or Geristore (composite base); and Concise after application of the intermediate resins All-Bond 2 Primers A+B, or the Scotch-Bond Multi-Purpose (SBMP) system. All specimens were stored in water at 37 degrees C for 24 hours before tensile bond strength testing. Alignment and uniform loading during testing were secured by engaging a hook in a circular ring soldered onto the bracket slot before bonding. Similar control brackets (n = 12) were bonded with Concise to extracted caries-free mandibular incisors. Bond failure sites were classified by a modified ARI system. Mean tensile bond strengths in the experimental group ranged from 3.4 to 6.4 MPa--significantly weaker than the control sample (13.2 MPa). Bond failure generally occurred at the amalgam/adhesive interface. Superbond C&B created the strongest bonds to amalgam; according to ANOVA and Duncan's Multiple-Range test, they were significantly stronger than the bonds with Panavia Ex and Concise, with Geristore in between. However, the bond strength of Concise to sandblasted amalgam was comparable to the Superbond C&B bonds when coupled with an intermediate application of All-Bond 2 Primers A+B. The SBMP, on the other hand, was less effective.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

由车削汞合金(ANA 2000)制备的扁平矩形片(n = 84),进行了氧化铝喷砂处理或用金刚砂车针进行粗糙化处理。使用以下材料将下颌切牙方丝弓托槽粘结到这些片上:Concise(双酚A缩水甘油醚树脂);三种金属粘结剂之一,即Superbond C&B(4-甲基丙烯酰氧基乙基偏苯三酸酐树脂)、Panavia Ex(10-甲基丙烯酰氧癸基二甲基丙烯酸酯双酚A缩水甘油醚树脂)或Geristore(复合基底);以及在应用中间树脂All-Bond 2底漆A+B或Scotch-Bond多功能(SBMP)系统后使用的Concise。在进行拉伸粘结强度测试之前,所有标本在37摄氏度的水中储存24小时。在测试过程中,通过在粘结前将钩子钩入焊接在托槽槽口上的圆环来确保对齐和均匀加载。类似的对照托槽(n = 12)用Concise粘结到拔除的无龋下颌切牙上。粘结失败部位根据改良的ARI系统进行分类。实验组的平均拉伸粘结强度范围为3.4至6.4兆帕,明显低于对照样本(13.2兆帕)。粘结失败通常发生在汞合金/粘结剂界面。Superbond C&B与汞合金形成的粘结最强;根据方差分析和邓肯多重范围检验,它们明显强于与Panavia Ex和Concise形成的粘结,Geristore形成的粘结强度介于两者之间。然而,当与All-Bond 2底漆A+B中间应用相结合时,Concise与喷砂汞合金的粘结强度与Superbond C&B的粘结强度相当。另一方面,SBMP的效果较差。(摘要截短至250字)

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