Publication: Strength of implant-supported lithium disilicate and polymer-infiltrated ceramic network restorations after thermomechanical aging
Strength of implant-supported lithium disilicate and polymer-infiltrated ceramic network restorations after thermomechanical aging
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Gil, A., Eliades, G., Özcan, M., Jung, R. E., Hämmerle, C. H. F., & Ioannidis, A. (2023). Strength of implant-supported lithium disilicate and polymer-infiltrated ceramic network restorations after thermomechanical aging. International Journal of Computerized Dentistry, 26, 237–245. https://doi.org/10.3290/j.ijcd.b3781703
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AIM: To evaluate the fracture load and type of failure of two different monolithic restorative materials bonded to standardized titanium bases and fabricated by two different procedures regarding the bonding interface. MATERIALS AND METHODS: All screw-retained implant crown specimens (n = 40), subjected to fatigue by thermomechanical loading, differed in the restorative material (lithium disilicate [LDS] or polymer-infiltrated ceramic network [PICN], referred to as 'hybrid ceramic' [HYC]) and the interface type between the restorative
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Gil, A., Eliades, G., Özcan, M., Jung, R. E., Hämmerle, C. H. F., & Ioannidis, A. (2023). Strength of implant-supported lithium disilicate and polymer-infiltrated ceramic network restorations after thermomechanical aging. International Journal of Computerized Dentistry, 26, 237–245. https://doi.org/10.3290/j.ijcd.b3781703