Toledano Manuel, Osorio Raquel, Osorio Estrella, Romeo Alejandro, de la Higuera Blanca, García-Godoy Franklin
Department of Dental Materials, University of Granada, Granada, Spain.
Angle Orthod. 2003 Feb;73(1):56-63. doi: 10.1043/0003-3219(2003)073<0056:BSOOBU>2.0.CO;2.
The purpose of the study was to evaluate the shear bond strength of stainless steel orthodontic brackets directly bonded to extracted human premolar teeth. Fifty teeth were randomly divided into five groups: (1) System One (chemically cured composite resin), (2) Light Bond (light-cured composite resin), (3) Vivaglass Cem (self-curing glass ionomer cement), (4) Fuji Ortho LC (light-cured glass ionomer cement) used after 37% orthophosphoric acid-etching of enamel (5) Fuji Ortho LC without orthophosphoric acid-etching. The brackets were placed on the buccal and lingual surfaces of each tooth, and the specimens were stored in distilled water (24 hours) at 37 degrees C and thermocycled. Teeth were mounted on acrylic block frames, and brackets were debonded using an Instron machine. Shear bond strength values at fracture (Nw) were recorded. ANOVA and Student-Newman-Keuls multiple comparison tests were performed (P < .05). Bonding failure site was recorded by stereomicroscope and analyzed by Chi-square test, selected specimens of each group were observed by scanning electron microscope. System One attained the highest bond strength. Light Bond and Fuji Ortho LC, when using an acid-etching technique, obtained bond strengths that were within the range of estimated bond strength values for successful clinical bonding. Fuji Ortho LC and Vivaglass Cem left an almost clean enamel surface after debracketing.
本研究的目的是评估直接粘结在拔除的人类前磨牙上的不锈钢正畸托槽的剪切粘结强度。50颗牙齿被随机分为五组:(1)系统一号(化学固化复合树脂),(2)光固化粘结剂(光固化复合树脂),(3)Vivaglass Cem(自固化玻璃离子水门汀),(4)Fuji Ortho LC(光固化玻璃离子水门汀)在牙釉质经37%正磷酸酸蚀后使用,(5)未进行正磷酸酸蚀的Fuji Ortho LC。将托槽放置在每颗牙齿的颊面和舌面,标本在37℃的蒸馏水中储存24小时并进行热循环处理。牙齿安装在丙烯酸块框架上,使用Instron机器使托槽脱粘。记录断裂时的剪切粘结强度值(Nw)。进行方差分析和Student-Newman-Keuls多重比较检验(P < 0.05)。通过立体显微镜记录粘结失败部位并进行卡方检验,每组选择的标本通过扫描电子显微镜观察。系统一号获得了最高粘结强度。光固化粘结剂和Fuji Ortho LC在使用酸蚀技术时,获得的粘结强度在成功临床粘结的估计粘结强度值范围内。脱槽后,Fuji Ortho LC和Vivaglass Cem留下的牙釉质表面几乎干净。