Wear behavior of current computer‐aided design and computer‐aided manufacturing composites and reinforced high performance polymers: An in vitro study.

Objective: To analyze the wear rate of computer‐aided design and computer‐aided manufacturing (CAD/CAM) composites, polyetheretherketones and glass ceramics. Material and Methods: Our study groups were prepared from two different resin‐based composites (Brillant Crios, Cerasmart), a glass ceramic (I...

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Publicado en:Journal of Esthetic & Restorative Dentistry Vol. 34; no. 3; pp. 527 - 534
Autores principales: Diken Turksayar, Almira Ada, Hisarbeyli, Duygu, Seçkin Kelten, Özlem, Bulucu, Naime Bilinç
Formato: pictorial research Journal Article
Publicado: Wiley-Blackwell Apr2022
Acceso en línea:Ver este registro en EBSCOhost
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      jtl: Journal of Esthetic & Restorative Dentistry
      issn: 14964155
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    pubinfo:
      dt: Apr2022
      vid: 34
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      pub: Wiley-Blackwell
      place: Malden, Massachusetts
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        156224119
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        10.1111/jerd.12828
        156224119
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      tig:
        atl: Wear behavior of current computer‐aided design and computer‐aided manufacturing composites and reinforced high performance polymers: An in vitro study.
      aug:
        au:
          Diken Turksayar, Almira Ada
          Hisarbeyli, Duygu
          Seçkin Kelten, Özlem
          Bulucu, Naime Bilinç
        affil: Faculty of Dentistry, Department of Prosthodontics, Biruni University, İstanbul, Turkey
      sug:
        subj:
          Polymers
          Computer-Aided Design
          Nanotechnology
          Tooth Abrasion
          Human
          In Vitro Studies
          Resins
          Biomedical and Dental Materials
          Dental Translucency
          Bicuspid
          Mastication
          Microscopy, Electron
          Kruskal-Wallis Test
      ab: Objective: To analyze the wear rate of computer‐aided design and computer‐aided manufacturing (CAD/CAM) composites, polyetheretherketones and glass ceramics. Material and Methods: Our study groups were prepared from two different resin‐based composites (Brillant Crios, Cerasmart), a glass ceramic (IPS Emax CAD) and reinforced polyetheretherketone (BioHPP) material (n = 10). Premolar teeth were used as antagonists. The specimens, which were subjected to two body wear tests (240,000 cycles, 1.2 Hz, 50N) in the chewing simulator, were scanned with a 3D laser scanner both before and after the wear test. Volume loss and wear depth were determined by means of the obtained images software program. The wear pattern was examined by scanning electron microscopy. Kruskal Wallis test served for analyzing. Results: The least volume loss and wear depth were seen in the polyetheretherketone material (0.06 ± 0.04 mm3, 0.02 ± 0.01 mm), while the maximum volume loss was seen in the groups containing resin‐based composite. (p = 0.05). The volume loss value in glass ceramics is between CAD/CAM composites and polyetheretherketone. Conclusion: The behavior of polyetheretherketone against enamel was different from glass ceramics and composite materials in terms of the amount of wear. Clinical Significance: Polyetheretheketone can be considered as an alternative to other chairside materials in terms of wear resistance.
      pubtype: Academic Journal
      doctype:
        pictorial
        research
        Journal Article
      ougenre: Article
    language: English
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