Akagawa Hirotoshi, Nikaido Toru, Burrow Michael F, Tagami Junji
Cariology and Operative Dentistry, Department of Restorative Sciences, Graduate School, Tokyo Medical and Dental University, Tokyo, 113-8549, Japan.
Am J Dent. 2005 Aug;18(4):233-6.
To evaluate the effect of cavity configuration on microtensile bond strengths of two resin composites for core build-up to pulpal floor dentin.
Access cavity preparation and root canal filling with gutta percha were performed on extracted human molars. Following this, the gutta percha in the pulp chamber was completely removed to expose pulpal floor dentin. The cavity walls remained as a control group (Cavity). For another group, the cavity walls were removed to create a flat surface for bonding (Flat). For the Cavity group, Clearfil SE Bond was applied to the cavity according to the manufacturer's instructions, and either a light-cured resin composite (PH, Clearfil Photo Core) or a dual-cured resin composite (DC, Clearfil DC Core), was placed in the bonded cavity. Clearfil Photo Core was placed in three increments while bulk-filling was used for Clearfil DC Core. The application of the bonding system and the composites to the flat dentin surface was the same as that for cavity. Specimens were stored in water for 1 week, then sectioned vertically into 2 or 3 slabs (0.7 mm thick) and trimmed for the microtensile bond strength (MTBS) test. The MTBSs were measured with a universal testing machine at a crosshead speed of 1.0 mm/minute.
The results (mean +/- SD, MPa, n=10) of PH/Cavity, PH/Flat and DC/Flat were 21.9 +/- 3.4, 28.9 +/- 4.0, and 27.6 +/- 6.1 respectively. The MTBS could not be determined in DC/Cavity because of debonding occurred during sample preparation.
评估洞型结构对两种用于髓室底牙本质核修复的树脂复合材料微拉伸粘结强度的影响。
对拔除的人磨牙进行开髓洞形预备并用牙胶进行根管充填。在此之后,将髓室内的牙胶完全去除以暴露髓室底牙本质。洞壁作为对照组(洞型)。对于另一组,去除洞壁以创建一个用于粘结的平面(平面)。对于洞型组,按照制造商的说明将Clearfil SE Bond粘结剂应用于洞型,然后将光固化树脂复合材料(PH,Clearfil Photo Core)或双重固化树脂复合材料(DC,Clearfil DC Core)放置在粘结的洞内。Clearfil Photo Core分三层放置,而Clearfil DC Core采用整块充填。将粘结系统和复合材料应用于平坦牙本质表面的操作与应用于洞型的相同。标本在水中储存1周,然后垂直切成2或3个薄片(0.7毫米厚)并修整以进行微拉伸粘结强度(MTBS)测试。使用万能试验机以1.0毫米/分钟的十字头速度测量MTBS。
PH/洞型、PH/平面和DC/平面的结果(平均值±标准差,MPa,n = 10)分别为21.9±3.4、28.9±4.0和27.6±6.1。由于在样品制备过程中发生脱粘,DC/洞型组无法测定MTBS。