Journal of Dentistry
Volume 34, Issue 3 , Pages 179-184 , March 2006

Load bearing capacity of fibre-reinforced and particulate filler composite resin combination

Received 30 March 2005 ,Accepted 31 May 2005.

References 

  1. Okabe T, Elvebak B, Carrasco L, Ferracane JL, Keanini RG, Nakajima H. Mercury release dental amalgams into continuously replenished liquids. Dental Materials. 2003;19:38–45
  2. Lohbauer U, von der Horst T, Frankenberger R, Krämer N, Petschelt A. Flexural fatigue behavior of resin composite dental restoratives. Dental Materials. 2003;19:435–440
  3. Eley BM. The future of dental amalgam: a review of literature part 7: possible alternative material to amalgam for restoration of posterior teeth. British Dental Journal. 1997;183:11–15
  4. De Souza FB, Guimaraes RP, Silva CH. A clinical evaluation of packable and microhybrid resin composite restoration: one-year report. Quintessence International. 2005;36:41–48
  5. Dogon IL. Current status of posterior composite resin in North America. In:  Vanherle G,  Smith DC editor. Posterior composite resin dental materials. Boston: Peter Szulc Publishing Company; 1985;p. 163–171
  6. Sarrett DC. Clinical challenges and the relevance of materials testing for posterior composite restorations. Dental Materials. 2005;21:9–20
  7. Van Nieuwenhuysen JP, Hoore WD, Carvalho J, Qvist V. Long-term evaluation of extensive restorations in permanent teeth. Journal of Dentistry. 2003;31:395–405
  8. Collins CJ, Bryant RW, Hodge KLV. A clinical evaluation of posterior composite resin restoration: 8-year findings. Journal of Dentistry. 1998;26:311–317
  9. Mjör IA, Dahl JE, Moorhead JE. Age of restorations at replacement in permanent teeth in general dental practice. Acta Odontogica Scandiavica. 2000;58:97–104
  10. Wilder AD, May KN, Bayne SC, Taylor DF, Leinfelder KF. Seventeen-year clinical study of ultraviolet-cured posterior composite Class I and II restoration. Journal of Esthetic Dentistry. 1999;11:135–142
  11. Opdam NJ, Loomans BA, Roeters FJ, Bronkhorst EM. Five-year clinical performance of posterior resin composite restorations placed by dental students. Journal of Dentistry. 2004;32:379–383
  12. Gaengler P, Hoyer I, Montage R. Clinical evaluation of posterior composite restoration: the 10-year report. Journal of Adhesive Dentistry. 2001;3:185–194
  13. Gaengler P, Hoyer I, Montag R, Gaebler P. Micromorphological evaluation of posterior composite restoration-a 10-year report. Journal of Oral Rehabilitaion. 2004;31:991–1000
  14. Kohler B, Rasmusson C-G, Odman P. A five-year clinical evaluation of class II composite resin restoration. Journal of Dentistry. 2000;28:111–116
  15. Xu HHK, Schumacher GE, Eichmiller FC, Peterson RC, Antonucci JM, Mueller HJ. Continuous-fiber performs reinforcement of dental resin composite restorations. Dental Materials. 2003;19:523–530
  16. Bae JM, Kim KN, Hasegawa K, Yoshinari M, Kawada E, Oda Y. Fatigue strengths of particulate filler composites reinforced with fibers. Dental Material journal. 2004;23:166–174
  17. Dyer SR, Lassila LV, Jokinen M, Vallittu PK. Effect of fiber position and orientation on fracture load of fiber-reinforced composite. Dental Materials. 2004;20:947–955
  18. Lassila LV, Nohrstrom T, Vallittu PK. The influence of short-term water storage on the flexural properties of unidirectional glass fiber- reinforced composite. Biomaterials. 2002;23:2221–2229
  19. Nohrstrom TJ, Vallittu PK, Yli-Urpo A. The effect of placement and quantity of glass fibers on the fracture resistance of interim fixed partial denture. International Journal of Prosthodontics. 2000;13:72–78
  20. Vallittu PK. Curring of silane coupling agent and its effect on the transverse strength of autopolymerizing polymethylmethacrylate-glass fiber composite. Journal of Oral Rehabilitation. 1997;24:124–130
  21. Vallittu PK. Flexural properties of acrylic resin polymers reinforced with unidirectional and woven glass fibers. Journal of Prosthestic Dentistry. 1999;81:318–326
  22. Fujii K, Carrick TE, Bicker R, McCabe JF. Effect of the applied load on surface contact fatigue of dental filling materials. Dental Materials. 2004;20:931–938
  23. Allara FW, Diefenderfer KE, Molinaro JD. Effect of three direct restorative materials on molar cuspal fracture resistance. American Journal of Dentistry. 2004;17:228–232
  24. Vallittu PK, Ruyter IE, Ekstrand K. Effect of 180-week water storage on the flexural properties of E-glass and silica fiber acrylic resin composite. International Journal of Prosthodontics. 2000;13:334–339
  25. Lastumäki TM, Lassila LV, Vallittu PK. Flexural properties of the bulk fiber-reinforced composite DC-Tell used in fixed partial Dentures. International Journal of Prosthodontics. 2001;14:22–26
  26. Burke FJT, Cheung SW, Mjor IA, Wilson NHF. Restoration longevity and analysis of reasons for the placement and replacement of restorations provided by vocational dental practitioners and their trainers in the United Kingdom. Quitessence International. 1999;30:234–242
  27. In:  Vallittu PK editors. The third international symposium on fiber-reinforced plastics in dentistry. Finland: Institute of Dentistry and Biomaterials Project, University of Turku; 2002;
  28. Gohring TN, Roos M. Inlay-fixed partial dentures adhesively and reinforced by glass fiber: clinical and scanning electron microscopy analysis after five years. European Journal of Oral Science. 2005;113:60–69
  29. Vallittu PK. Survival rates of resin-bonded, glass fiber-reinforced composite fixed partialdentures with a mean follow-up of 42 month: a pilot study. Journal of Prosthestic Dentistry. 2004;91:241–246
  30. Krause WR, Park SH, Straup RA. Mechanical properties of Bis-GMA resin short glass fiber composites. Journal of Biomedical Materials Research. 1989;23:1195–1211
  31. Bayne SC, Thompson JY. Mechanical property analysis of two admixed PRIMM- modifed commercial dental composites. Transactions of the Academy of Dental Materials. 1996;9:238
  32. Tezvergil A, Lassila LV, Vallittu PK. The effect of fiber orientation on the thermal expansion coefficients of fiber-reinforced composites. Dental Materials. 2003;19:471–477
  33. Vallittu PK. Experiences of using glass fibers with multiphase acrylic resin systems. Theoretical background and clinical examples. In:  Vallittu PK editors. The first international symposium on fiber-reinforced plastics in dentistry. Finland: Institute of Dentistry and Biomaterials Project, University of Turku; 1999;
  34. Bortolotto T, Krejci I. The effect of temperature on hardness of a light-curring composite. Journal of Dental Research. 2003;82:[Abstract 0119]
  35. Freedman G, krejci I. Warming Up to Composites. Compend Contin Edue Dent. 2004;25:371–375
  36. Khan AM, Satou N, Shintani H, Taira M, Wakasa K, Yamaki M. Effect of post- curing by heat on the mechanical properties of visible-light cured inlay composites. Journal of Oral Rehabiltaion. 1993;20:605–614
  37. Karacaer Ö, Polat TN, Tezvergil A, Lassila LVJ, Vallittu PK. The effect of length and concentration on the mechanical properties of an injection-and a compression-molded denture base polymer. Journal of Prosthestic Dentistry. 2003;90:358–393

PII: S0300-5712(05)00118-1

doi: 10.1016/j.jdent.2005.05.010

Journal of Dentistry
Volume 34, Issue 3 , Pages 179-184 , March 2006