4.2 Article

External gap progression after cyclic fatigue of adhesive overlays and crowns made with high translucency zirconia or lithium silicate

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出版社

WILEY
DOI: 10.1111/jerd.12837

关键词

crown; endodontically treated teeth; external gap; high-translucency zirconia; micro-CT; overlay

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  1. Projekt DEAL

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The study evaluated the external gap progression of high translucency zirconia (HTZ) and zirconia-reinforced lithium silicate (ZLS) on endodontically treated teeth. Results showed that high-retentive designs with ZLS performed better in maintaining external margin sealing after cyclic fatigue. Clinicians should carefully consider preparation designs and ceramic material selection for optimal restoration of endodontically treated molars.
Objectives To evaluate three-dimensional external gap progression after chewing simulation of high translucency zirconia (HTZ) and zirconia-reinforced lithium silicate (ZLS) applied on endodontically treated teeth with different preparation designs. Materials and Method Endodontically treated molars were prepared with low-retentive (adhesive overlay) and high-retentive (full crown) designs above cementum-enamel junction and restored with HTZ and ZLS. Micro-computed tomography analysis was assessed before and after chewing simulation to evaluate three-dimensionally the external gap progression. Results were statistically analyzed with two-way ANOVA and post-hoc Tukey test. Results High-retentive preparation design had a significantly inferior gap progression compared to the overlay preparation (p < 0.01); ZLS exhibited a significant inferior gap progression compared to HTZ (p < 0.01). Conclusions High-retentive preparations restored with ZLS seem to better perform in maintaining the sealing of the external margin after cyclic fatigue. Clinical significance The clinician should pay attention to the proper combination of preparation designs and ceramic material selection for an endodontically treated molar restoration. HTZ seems to perform worse than lithium silicate in terms of marginal sealing, still showing lacks in resistance to cyclic fatigue when adhesive preparations are performed.

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