Lang Mark, McHugh Siobhan, Burke F J Trevor
Glasgow Dental School, Scotland.
Am J Dent. 2003 Sep;16 Spec No:88A-96A.
To assess the fracture strength of dentin-bonded crowns placed on cores of amalgam, resin composite and viscous glass-ionomer.
40 sound maxillary premolar teeth were selected. These were mounted in acrylic resin in stainless steel molds. The palatal cusp of each tooth was removed in a standardized manner to simulate a core build-up preparation. Teeth were randomly divided into four groups, and each group was allocated a core material. For Group A, the core was pin-retained amalgam, for Group B the core was bonded amalgam, for Group C the core material was resin composite and for Group D the core material was high-viscosity glass-ionomer material. Cores were then constructed to the original tooth dimensions. A standardized crown preparation was made, impressions taken and an all-ceramic crown constructed in feldspathic porcelain. The crowns were luted in position using a dentin-bonding agent/dual cure resin-composite cement and the completed specimens subjected to compressive loading in a Universal Testing machine at 1 mm/minute.
The mean forces to produce fracture of the crowns were 1.58 kN (+/- 0.41), 1.35 kN (+/- 0.44), 1.25 kN (+/- 0.24), and 1.12 kN (+/- 0.25) respectively for groups A, B, C and D. Statistical analysis by ANOVA indicated that the pinned amalgam group performed significantly better than the glass-ionomer group (P > 0.05).
评估放置在汞合金、树脂复合材料和粘性玻璃离子体核上的牙本质粘结冠的断裂强度。
选取40颗健康的上颌前磨牙。将这些牙齿安装在不锈钢模具中的丙烯酸树脂中。以标准化方式去除每颗牙齿的腭尖,以模拟核堆塑预备。牙齿随机分为四组,每组分配一种核材料。A组的核为针固汞合金,B组的核为粘结汞合金,C组的核材料为树脂复合材料,D组的核材料为高粘性玻璃离子体材料。然后将核构建至原始牙齿尺寸。进行标准化的牙冠预备,制取印模,并制作长石质瓷全瓷冠。使用牙本质粘结剂/双固化树脂复合粘结剂将牙冠粘结到位,并将完成的标本在万能试验机中以1毫米/分钟的速度进行压缩加载。
A、B、C和D组牙冠产生断裂的平均力分别为1.58 kN(±0.41)、1.35 kN(±0.44)、1.25 kN(±0.24)和1.12 kN(±0.25)。方差分析的统计分析表明,针固汞合金组的表现明显优于玻璃离子体组(P>0.05)。