A1 Refereed original research article in a scientific journal
Fracture load and three‐dimensional internal void analysis of direct composites used to restore worn molars; 
Authors: Yli-Urpo, Topias; Määttä, Jorma; Suominen, Auli; Vallittu, Pekka K.; Närhi, Timo; Le Bell-Rönnlöf, Anna-Maria; Bijelic-Donova, Jasmina
Publisher: Wiley
Publication year: 2026
Journal: European Journal of Oral Sciences
Article number: e70104
ISSN: 0909-8836
eISSN: 1600-0722
DOI: https://doi.org/10.1111/eos.70104
Publication's open availability at the time of reporting: Open Access
Publication channel's open availability : Partially Open Access publication channel
Web address : https://doi.org/10.1111/eos.70104
Self-archived copy’s web address: https://research.utu.fi/converis/portal/detail/Publication/523649121
Self-archived copy's licence: CC BY
Self-archived copy's version: Publisher`s PDF
This study evaluated (1) the load-bearing capacity of molars restored with direct occlusal veneers fabricated either from short-fiber-reinforced composite (SFRC) or particulate-filled composite (PFC) and the presence of internal voids within the materials, and (2) effect of water storage on the fracture load and correlation between internal voids and fracture load. Sixty human molars (n = 10/group) were prepared with flat occlusal surfaces and preserved enamel margins simulating worn teeth. Conventional molds were taken for each tooth to control the preparation depth and transparent molds to restore the teeth to their original shape. Following bonding procedure, teeth were restored with flowable SFRC, flowable PFC, or condensable PFC using either injectable or pressing technique. Restored teeth were stored in water for 1 d or 6 months before the static loading test. Fracture mode and three-dimensional internal void analyses were additionally conducted. SFRC occlusal veneers showed significantly higher fracture load (3661 +/- 446 N) than both PFC materials, flowable PFC (2064 +/- 372 N) and condensable PFC (2183 +/- 563 N). SFRC redirected the fractures towards the periphery of the restoration. Prolonged water storage duration or single voids did not adversely affect the fracture load. The use of SFRC as occlusal veneers for restoring molars improves the fracture load and the fracture propagation.
Keywords:
air bubble analysis, occlusal veneer, particulate-filled composite, short-fiber-reinforced composite, water storage, worn teeth
Downloadable publication This is an electronic reprint of the original article. |
Funding information in the publication:
The authors are thankful to GC Corporation for providing materials for this research. Open Access funding provided by University of Turku (UTU), including Turku University Central Hospital.