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Results: 146
Number of items: 146
  • de Gee, A. J., & Werner, A. (2005). Wear of ELS, ELS hf, Microhybrid Composite mf and Tetric Evo Ceram determined in the ACTA wear machine. Report for: Saremco. ACTA.
  • de Gee, A. J., & Werner, A. (2005). Wear determined in the ACTA wear machine of K-0152, Z250, Quixfil, Tetric Evo Ceram and X-tra fil. Report for: Dentspley DeTrey. ACTA.
  • Algera, T. J., Kleverlaan, C. J., de Gee, A. J., Prahl-Andersen, B., & Feilzer, A. J. (2005). The influence of accelerating the setting rate by ultrasound or heat on the bond strength of glass ionomers used as orthodontic bracket cements. European Journal of Orthodontics, 27, 472-476. https://doi.org/10.1093/ejo/cji041
  • Bolhuis, H. P. B., de Gee, A. J., & Feilzer, A. J. (2005). The influence of fatigue loading on type of luting agent on the quality of cement layer and retention strength of carbon fiber posts/resin composite core restorations. Operative Dentistry, 30, 220-227.
  • de Gee, A. J. (2005). Moderne adhesieven voor hechting aan de tandstructuur. ACTA quality practice, 3, 23-31.
  • de Gee, A. J., & Werner, A. (2005). Wear of acetal and stainless steel crowns in the ACTA wear machine. Report for: Uri-Dent Ltd. ACTA.
  • Özok, A. R., Wu, M. K., de Gee, A. J., & Wesselink, P. R. (2004). Effect of dentin perfusion on the sealing ability and microtensile bond strengths of a total-etch versus an all-in-one adhesive. Dental Materials, 20, 479-486. https://doi.org/10.1016/j.dental.2003.07.004
  • Bolhuis, H. P. B., de Gee, A. J., Pallav, P., & Feilzer, A. J. (2004). Influence of fatigue loading on the performance of adhesive and nonadhesive luting cements for cast post-and-core buildups in maxillary premolars. The International Journal of Prosthodontics, 17, 571-576.
  • Bolhuis, H. P. B., de Gee, A. J., & Feilzer, A. J. (2004). Influence of fatigue loading on four post-and-core systems in maxillary premolars. Quintessence International, 35, 657-667.
  • van Duinen, R. N. B., Davidson, C. L., de Gee, A. J., & Feilzer, A. J. (2004). In situ transformation of glass-ionomer into an enamel-like material. American Journal of Dentistry, 17, 223-227.
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