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首页> 外文期刊>Angle Orthodontist >Bond strength of amorphous calcium phosphate-containing orthodontic composite used as a lingual retainer adhesive.
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Bond strength of amorphous calcium phosphate-containing orthodontic composite used as a lingual retainer adhesive.

机译:含无定形磷酸钙的正畸复合材料的粘合强度,用作舌头固位粘合剂。

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OBJECTIVE: To evaluate the shear bond strength and fracture mode difference between amorphous calcium phosphate (ACP)-containing adhesive and conventional resin-based composite material used as an orthodontic lingual retainer adhesive. MATERIALS AND METHODS: Forty crowns of extracted lower human incisors were mounted in acrylic resin, leaving the buccal surface of the crowns parallel to the base of the molds. The teeth were randomly divided into two groups: experimental and control, containing 20 teeth each. Conventional lingual retainer composite (Transbond-LR, 3M-Unitek) and ACP-containing orthodontic adhesive (Aegis-Ortho) were applied to the teeth surface by packing the material into the cylindrical plastic matrices with a 2.34-mm internal diameter and a 3-mm height (Ultradent) to simulate the lingual retainer bonding. For shear bond testing, the specimens were mounted in a universal testing machine, and an apparatus (Ultradent) attached to a compression load cell was applied to each specimen untilfailure occurred. The shear bond data were analyzed using Student's t-test. Fracture modes were analyzed by chi(2) test. RESULTS: The statistical test showed that the bond strengths of group 1 (control Transbond-LR, mean: 24.77 +/- 9.25 MPa) and group 2 (ACP-containing adhesive, mean: 8.49 +/- 2.53 MPa) were significantly different from each other. In general, a greater percentage of the fractures were adhesive at the tooth-composite interface (60% in group 1 and 55% in group 2), and no statistically significant difference was found between groups. CONCLUSION: The ACP-containing Aegis-Ortho adhesive resulted in a significant decrease in bond strength to the etched enamel surface.
机译:目的:评估含无定形磷酸钙(ACP)的胶粘剂与常规树脂基复合材料(作为正畸舌侧固定剂)之间的剪切粘结强度和断裂模式差异。材料与方法:将四十颗拔下的人类切牙的牙冠安装在丙烯酸树脂中,使牙冠的颊面与模具的底部平行。将牙齿随机分为两组:实验牙齿和对照组,每组20个牙齿。通过将材料包装到内径为2.34毫米,内径为3-34毫米的圆柱形塑料基体中,将常规的舌状固位复合材料(Transbond-LR,3M-Unitek)和含ACP的正畸粘合剂(Aegis-Ortho)应用到牙齿表面。高度(毫米)可模拟舌头固定器的粘合。对于剪切粘结测试,将样本安装在通用测试机中,并将连接至压缩测力计的设备(Ultradent)应用于每个样本,直到发生故障。剪切粘合力数据使用学生t检验进行了分析。通过chi(2)测试分析断裂模式。结果:统计测试表明,第1组(对照Transbond-LR,平均值:24.77 +/- 9.25 MPa)和第2组(含ACP粘合剂,平均值:8.49 +/- 2.53 MPa)的粘结强度与彼此。通常,较大比例的骨折在牙齿-复合材料界面处是粘连性的(第1组为60%,第2组为55%),并且各组之间无统计学差异。结论:含ACP的Aegis-Ortho粘合剂导致与蚀刻瓷釉表面的粘结强度显着降低。

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