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Similarly, both Linklater and Gordon (2001) and Hobson et al. (2001) showed significant differences in the bond strength of different tooth types, but no significant differences between upper and lower teeth of the same type (Linklater and Gordon, 2001).
Moreover, other studies revealed that cavity preparation might affect bond strength of different types of adhesive differently [ 10– 10].
Therefore, this study aimed to evaluate the effect of sodalite zeolite-infiltration on the CTE behaviour and bond strength of different all-ceramic prostheses.
The effect of different surface treatment techniques on the bond strength of different types of ceramic-glass polymer computer-assisted design and computer-assisted manufacturing (CAD-CAM) materials and resin cements after aging is unknown.
In the present study, the bond strength of different orthodontic bracket materials (ceramic, stainless steel, and titanium) as well as stresses developed in bracket-cement-enamel systems was evaluated using FE analysis.
Consequently, the aim of this study was designed to determine the bond strength of different orthodontic bracket materials (ceramic, stainless steel, and titanium) as well as stresses developed in bracket-cement-enamel systems using FE analysis.
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The bond strengths of different configuration joints were found out.
The one-way ANOVA, Table 1, indicated significant differences in the shear bond strength of the different groups (P = .000).000
Significant differences in the shear bond strength of the different groups (P = .000) was found as well as in the ARI scores distribution (P = .000).000
Four-point bending tests were conducted to measure the bond strength of the different types of ITZs at a water to solid (W/S) of 0.30, 0.35 and 0.40 for the GP and OPC paste after 7 and 14 days' curing, respectively.
This study evaluated the shear bond strength of three different CR to a FP surface, with and without FP pretreatment with adhesive.
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