Department of Stomatology, Rey Juan Carlos University, Avda. de Atenas s/n, 28922 Alcorcón, Madrid, Spain.
Med Oral Patol Oral Cir Bucal. 2012 Sep 1;17(5):e859-64. doi: 10.4317/medoral.17802.
To compare microhardness along the root canal post space of two resin cements in different shades and a dual-cure resin core material.
Root canals of 21 bovine incisors were prepared for post space. Translucent posts (X∘Post, Dentsply DeTrey) were luted using one the following resin luting agent: Calibra (Dentsply DeTrey) in Translucent, Medium and Opaque shades, RelyX Unicem (3M ESPE) in Translucent, A2 and A3 shades and the dual-cure resin core material Core∘X flow. All materials were applied according to manufacturers' instructions and were all photopolymerized (Bluephase LED unit, Ivoclar Vivadent, 40s). After 24 hours, roots were transversally cut into 9 slices 1 mm thick from the coronal to apical extremes, three corresponding to each root third. Then, VHNs were recorded (100gf, 30 s) on the resin luting materials along the adhesive interface in all sections. Data were analyzed by two-way ANOVA and SNK tests (α=0.05).
A significant influence on microhardness of resin luting material in their respective shades (p<0.0001), root third (p<0.0001) and interactions between them was detected (p<0.0001). RelyX Unicem cement showed the highest microhardness values and Calibra the lowest, regardless of the shade selected. All resin luting materials tested exhibited a significantly higher microhardness in the cervical third.
Microhardness of resin luting agents tested inside the canal is dependent on material brand and resin cement shade seems to be a less relevant factor. Microhardness decreased along the root canal, regardless of the shade selected.
比较两种不同颜色的树脂水门汀和双固化树脂核材料在根管桩腔周围的显微硬度。
将 21 颗牛切牙的根管预备成桩腔。使用以下一种树脂黏固剂黏固半透明桩(X∘Post,Dentsply DeTrey):Calibra(Dentsply DeTrey)半透明、中明度和不透明度、RelyX Unicem(3M ESPE)半透明、A2 和 A3 明度以及双固化树脂核材料 Core∘X 流动。所有材料均按制造商的说明使用,并进行光聚合(Ivoclar Vivadent,Bluephase LED 单元,40s)。24 小时后,将牙根从冠部到根尖方向横切成 9 个 1mm 厚的切片,每个牙根对应 3 个。然后,在所有切片的黏合界面上沿树脂黏固材料记录 VHNs(100gf,30s)。数据采用双向方差分析和 SNK 检验(α=0.05)进行分析。
树脂黏固材料在各自明度(p<0.0001)、根段(p<0.0001)及其相互作用(p<0.0001)上对微硬度有显著影响。无论选择何种明度,RelyX Unicem 水泥的微硬度值最高,Calibra 最低。所有测试的树脂黏固材料在颈段的微硬度均显著较高。
根管内树脂黏固剂的微硬度取决于材料品牌,树脂水门汀的明度似乎是一个不太相关的因素。无论选择何种明度,微硬度均沿根管下降。