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Effects of femtosecond laser and other surface treatments on the bond strength of metallic and ceramic orthodontic brackets to zirconia

机译:飞秒激光和其他表面处理对金属和陶瓷正畸托槽与氧化锆结合强度的影响

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摘要

Femtosecond laser has been proposed as a method for conditioning zirconia surfaces to boost bond strength. However, metallic or ceramic bracket bonding to femtosecond laser-treated zirconia surfaces has not been tested. This study compared the effects of four conditioning techniques, including femtosecond laser irradiation, on shear bond strength (SBS) of metallic and ceramic brackets to zirconia.Three hundred zirconia plates were divided into five groups: 1) control (C); 2) sandblasting (APA); 3) silica coating and silane (SC); 4) femtosecond laser (FS); 5) sandblasting followed by femtosecond laser (APA+SC). A thermal imaging camera measured temperature changes in the zirconia during irradiation. Each group was divided into 2 subgroups (metallic vs ceramic brackets). SBS was evaluated using a universal testing machine. The adhesive remnant index (ARI) was registered and surfaces were observed under SEM. Surface treatment and bracket type significantly affected the bracket-zirconia bond strength. SBS was significantly higher (p<0.001) for ceramic brackets in all groups (APA+FS > APA > FS > SC > control) than metallic brackets (APA+FS > FS > SC > APA > control). For metallic brackets, groups SC (5.99 ± 1.86 MPa), FS (6.72 ± 2.30 MPa) and APA+FS (7.22 ± 2.73 MPa) reported significantly higher bond strengths than other groups (p < 0.05). For ceramic brackets, the highest bond strength values were obtained in groups APA (25.01 ± 4.45 MPa), FS (23.18 ± 6.51 MPa) and APA+FS (29.22 ± 8.20 MPa).Femtosecond laser enhances bond strength of ceramic and metallic brackets to zirconia. Ceramic brackets provide significantly stronger adhesion than metallic brackets regardless of the surface treatment method.
机译:飞秒激光已被提出作为一种调节氧化锆表面以提高结合强度的方法。但是,尚未测试与飞秒激光处理的氧化锆表面结合的金属或陶瓷托架。本研究比较了飞秒激光辐照等四种调节技术对金属和陶瓷托座与氧化锆的剪切粘结强度(SBS)的影响。三百张氧化锆板分为五组: 2)喷砂(APA); 3)二氧化硅涂层和硅烷(SC); 4)飞秒激光(FS); 5)喷砂,然后使用飞秒激光(APA + SC)。一台热像仪测量了辐照过程中氧化锆的温度变化。每组分为2个子组(金属支架与陶瓷支架)。使用通用测试机评估SBS。记录粘合剂残留指数(ARI),并在SEM下观察表面。表面处理和托槽类型显着影响托槽-氧化锆粘结强度。所有组(APA + FS> APA> FS> SC>对照)中陶瓷支架的SBS均显着高于金属支架(APA + FS> FS> SC> APA>对照)(p <0.001)。对于金属托槽,SC组(5.99±1.86 MPa),FS(6.72±2.30 MPa)和APA + FS(7.22±2.73 MPa)报告的结合强度明显高于其他组(p <0.05)。对于陶瓷托槽,在APA(25.01±4.45 MPa),FS(23.18±6.51 MPa)和APA + FS(29.22±8.20 MPa)组中获得了最高的结合强度值。飞秒激光将陶瓷和金属托槽的结合强度提高到氧化锆。无论采用何种表面处理方法,陶瓷托架都比金属托架具有更强的附着力。

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