Arici Selim, Arici Nursel
Department of Orthodontics, Ondokuz Mayis University, Samsun, Turkey.
Angle Orthod. 2003 Dec;73(6):692-6. doi: 10.1043/0003-3219(2003)073<0692:EOTOTB>2.0.CO;2.
This study investigated the effects of thermally induced stresses (thermocycling) on the shear bond strength of resin-modified, chemically cured, glass ionomer cement for use as an orthodontic bonding agent. A conventional no-mix composite resin was also used as a control. Mesh-based metal orthodontic brackets were bonded to extracted human premolars using either the resin-modified glass ionomer cement or the no-mix composite resin. Specimens were stored either in water at 37 degrees C for 24 hours for baseline data or thermocycled between 5 degrees C and 55 degrees C for 200 and 20,000 cycles before testing the in vitro shear bond strengths. Thermocycling reduced shear bond strengths for all specimens. The resin-modified glass ionomer cement showed a 11.1% decrease after 200 thermocycles and 26.5% decrease after 20,000 thermocycles, whereas the no-mix adhesive resin showed only 5.7% and 17.9% reductions, respectively. Analysis of variance showed statistically significant differences between the mean shear bond strengths of the groups at the P < .001 level of significance. For the resin-modified glass ionomer cement groups, the predominant bond failure site was at the bracket-adhesive interface. The results of this study suggest strongly that resin-modified glass ionomer cements offer a viable alternative to conventional no-mix composite resins, with satisfactory in vitro shear bond strength even after 20,000 thermocycles.
本研究调查了热诱导应力(热循环)对用作正畸粘结剂的树脂改性化学固化玻璃离子水门汀剪切粘结强度的影响。还使用传统的非混合复合树脂作为对照。使用树脂改性玻璃离子水门汀或非混合复合树脂将基于网的金属正畸托槽粘结到拔除的人类前磨牙上。在测试体外剪切粘结强度之前,将标本在37摄氏度的水中储存24小时以获取基线数据,或将其在5摄氏度至55摄氏度之间进行200次和20000次热循环。热循环降低了所有标本的剪切粘结强度。树脂改性玻璃离子水门汀在200次热循环后下降了11.1%,在20000次热循环后下降了26.5%,而非混合粘结树脂分别仅下降了5.7%和17.9%。方差分析显示,在P <.001的显著性水平下,各组的平均剪切粘结强度之间存在统计学上的显著差异。对于树脂改性玻璃离子水门汀组,主要的粘结失效部位是托槽-粘结剂界面。本研究结果强烈表明,树脂改性玻璃离子水门汀是传统非混合复合树脂的可行替代品,即使在20000次热循环后仍具有令人满意的体外剪切粘结强度。