Oduncuoğlu Bahar Füsun, Yamanel Kıvanç, Koçak Zahire Şahinoğlu
Department of Periodontology, Başkent University School of Dentistry, Ankara, Turkey.
Department of Orthodontics, Başkent University Dr. Turgut Noyan Practice and Research Center, Adana, Turkey.
Turk J Orthod. 2020 Mar 1;33(1):37-42. doi: 10.5152/TurkJOrthod.2020.19067. eCollection 2020 Mar.
Sonic and ultrasonic instrumentations generate vibrations that may influence debonding characteristics. The objective of this in vitro study was to assess the direct and indirect effects of sonic and ultrasonic periodontal instrumentations on the shear bond strength (SBS) and the adhesive remnant index (ARI) scores of metallic orthodontic brackets.
Metallic brackets were bonded to 75 extracted mandibular central incisors that were embedded in acrylic resin. Instrumentations around the bracket base performed with ultrasonic (UltrasonicB group, n=15) and sonic (SonicB group, n=15) scalers were used to evaluate the direct effects on the SBS of brackets. Lingual surface instrumentations with ultrasonic (UltrasonicL group, n=15) and sonic (SonicL group, n=15) scalers were performed to assess the indirect effects. The control group (n=15) did not have any treatment. Instrumentations were performed for 30 s with 0° scaler tip angulations with settings recommended by manufacturers. The SBS of the brackets tested with a universal testing machine and ARI scores were recorded. Data were analyzed by Kruskal-Wallis and Mann-Whitney U tests.
The mean SBS of the control group was significantly higher than that of the UltrasonicB and SonicB groups (p=0.008). The UltrasonicL and SonicL group instrumentations also decreased the SBS, although the difference was statistically insignificant. UltrasonicB instrumentations caused significantly higher frequency of ARI scores than the control group.
The decrease of the SBS of metallic brackets indicates the influence of ultrasonic and sonic instrumentations on the breakage behavior at the bracket-resin interface. Instrumentations around the bracket base should be conducted with caution to decrease the bond failure risk of metallic brackets.
声波和超声器械产生的振动可能会影响脱粘特性。本体外研究的目的是评估声波和超声牙周器械对金属正畸托槽的剪切粘结强度(SBS)和粘结剂残留指数(ARI)评分的直接和间接影响。
将金属托槽粘结到75颗嵌入丙烯酸树脂的拔除下颌中切牙上。使用超声(超声B组,n = 15)和声波(声波B组,n = 15)洁治器在托槽基部周围进行器械操作,以评估对托槽SBS的直接影响。使用超声(超声L组,n = 15)和声波(声波L组,n = 15)洁治器在舌面进行器械操作,以评估间接影响。对照组(n = 15)未进行任何处理。按照制造商推荐的设置,使用0°洁治器尖端角度进行30秒的器械操作。用万能试验机测试托槽的SBS并记录ARI评分。数据采用Kruskal-Wallis和Mann-Whitney U检验进行分析。
对照组的平均SBS显著高于超声B组和声波B组(p = 0.008)。超声L组和声波L组的器械操作也降低了SBS,尽管差异无统计学意义。超声B组器械操作导致的ARI评分频率显著高于对照组。
金属托槽SBS的降低表明声波和超声器械操作对托槽-树脂界面的断裂行为有影响。在托槽基部周围进行器械操作时应谨慎,以降低金属托槽的粘结失败风险。