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Influence of activation modes on diametral tensile strength of dual-curing resin cements

机译:活化方式对双固化树脂水泥直径拉伸强度的影响

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In metallic restorations, the polymerization of dual-curing resin cements depends exclusively on chemical activation. The effect of the lack of photoactivation on the strength of these cements has been rarely studied. This study evaluated the influence of activation modes on the diametral tensile strength (DTS) of dual-curing resin cements. Base and catalyst pastes of Panavia F, Variolink II, Scotchbond Resin Cement, Rely X and Enforce were mixed and inserted into cylindrical metal moulds (4 x 2 mm). Cements were either: 1) not exposed to light (chemical activation = self-cured groups) or 2) photoactivated through mylar strips (chemical and photo-activation = dual-cured groups) (n = 10). After a 24 h storage in 37oC distilled water, specimens were subjected to compressive load in a testing machine. A self-curing resin cement (Cement-It) and a zinc phosphate cement served as controls. Comparative analyses were performed: 1) between the activation modes for each dual-curing resin cement, using Student’s t test; 2) among the self-cured groups of the dual-curing resin cements and the control groups, using one-way ANOVA and Tukey’s test (alpha = 0.05). The dual-cured groups of Scotchbond Resin Cement (53.3 MPa), Variolink II (48.4 MPa) and Rely X (51.6 MPa) showed higher DTS than that of self-cured groups (44.6, 40.4 and 44.5 MPa respectively) (p < 0.05). For Enforce (48.5 and 47.8 MPa) and Panavia F (44.0 and 43.3 MPa), no significant difference was found between the activation modes (p > 0.05). The self-cured groups of all the dual-curing resin cements presented statistically the same DTS as that of Cement-It (44.1 MPa) (p > 0.05), and higher DTS than that of zinc phosphate (4.2 MPa). Scotchbond Resin Cement, Variolink II and Rely X depended on photoactivation to achieve maximum DTS. In the absence of light, all the dual-curing resin cements presented higher DTS than that of zinc phosphate and statistically the same as that of Cement-It (p > 0.05).
机译:在金属修复物中,双固化树脂胶泥的聚合完全取决于化学活化。很少研究缺乏光活化作用对这些水泥强度的影响。这项研究评估了活化方式对双固化树脂水泥的径向拉伸强度(DTS)的影响。将Panavia F,Variolink II,Scotchbond树脂水泥,Rely X和Enforce的基础浆和催化剂浆混合,然后插入圆柱形金属模具(4 x 2 mm)中。水泥是:1)不暴露于光下(化学活化=自固化基团)或2)通过聚脂薄膜条光活化(化学和光活化=双固化基团)(n = 10)。在37oC蒸馏水中储存24小时后,样品在测试机中承受压缩载荷。自固化树脂水泥(Cement-It)和磷酸锌水泥作为对照。进行了比较分析:1)使用学生t检验在每种双固化树脂水泥的活化模式之间进行分析; 2)使用单向方差分析和Tukey检验(α= 0.05)在双固化树脂水泥的自固化组和对照组中进行。 Scotchbond Resin Cement(53.3 MPa),Variolink II(48.4 MPa)和Rely X(51.6 MPa)双固化组的DTS高于自固化组(分别为44.6、40.4和44.5 MPa)(p <0.05 )。对于Enforce(48.5和47.8 MPa)和Panavia F(44.0和43.3 MPa),激活模式之间没有发现显着差异(p> 0.05)。统计上,所有双固化树脂水泥的自固化基团的DTS与Cement-It(44.1 MPa)相同(P> 0.05),并且比磷酸锌(4.2 MPa)高。 Scotchbond树脂水泥,Variolink II和Rely X依靠光活化来获得最大的DTS。在没有光照的情况下,所有双固化树脂水泥的DTS均高于磷酸锌,并且在统计学上与Cement-It相同(p> 0.05)。

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