Translucency and Color Stability of a Simplified Shade Nanohybrid Composite after Ultrasonic Scaling and Air-Powder Polishing
Permanent lenke
https://hdl.handle.net/10037/28199Dato
2022-12-15Type
Journal articleTidsskriftartikkel
Peer reviewed
Forfatter
Babina, Ksenia; Polyakova, Maria; Sokhova, Inna; Doroshina, Vladlena; Zaytsev, Alexandr; Nikonova, Elena E.; Budylin, Gleb S.; Shirshin, Evgeny A.; Tantardini, Christian; Novozhilova, NinaSammendrag
We aimed to assess the influence of professional dental prophylaxis on the translucency
and color stability of a novel simplified shade nanohybrid composite material. Sixty composite
disks (5 mm in diameter and 2 mm thick) of light (n = 30) and dark (n = 30) shades were prepared.
The specimens were randomly divided into the following three groups (n = 10) according to the
prophylaxis procedure used: ultrasonic scaling, air-powder polishing with sodium bicarbonate, and
controls. The specimens were submitted to translucency and color analysis based on the CIELab
system. Two measurements were performed before and after 48-h storage in coffee. Translucency
values of untreated light and dark specimens were 9.15 ± 0.38 and 5.28 ± 1.10, respectively. Airpowder polishing decreased the translucency of the light composite specimens. Storage in coffee
resulted in color changes (∆E) ranging between 2.69 and 12.05 and a mean translucency decrease
ranging between −0.88 and −6.91. The samples in the light group tended to exhibit greater staining;
the treatment method had no effect on ∆E. It can be concluded that light-shade composite restorations
are more prone to translucency and color changes resulting from air-powder polishing and contact
with staining media. However, further research using other composites and powders is required.
Forlag
MDPISitering
Babina, Polyakova, Sokhova, Doroshina, Zaytsev, Nikonova, Budylin, Shirshin, Tantardini, Novozhilova. Translucency and Color Stability of a Simplified Shade Nanohybrid Composite after Ultrasonic Scaling and Air-Powder Polishing. Nanomaterials. 2022;12(24)Metadata
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