Additive Zirconia in Dentistry: Techniques, Trends, and Future Perspectives.

Additive manufacturing (AM) has gained significant traction in the dental field, yet its application in dental ceramics, specifically zirconia (ZrO2), is still evolving. ZrO2, a widely used biomaterial, has become popular in dental procedures due to its exceptional properties. Although subtractive t...

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Publicado en:BioMed Research International Vol. 2025; pp. 1 - 15
Autores principales: Aswal, Gunjan Singh, Rawat, Renu, Rafeek, Reisha, Dwivedi, Dhara, Prabhakar, Nitin, Gupta, Madan Mohan, Jiang, Heng Bo
Formato: review tables/charts Journal Article
Publicado: Wiley-Blackwell 10/10/2025
Acceso en línea:Ver este registro en EBSCOhost
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        atl: Additive Zirconia in Dentistry: Techniques, Trends, and Future Perspectives.
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        au:
          Aswal, Gunjan Singh
          Rawat, Renu
          Rafeek, Reisha
          Dwivedi, Dhara
          Prabhakar, Nitin
          Gupta, Madan Mohan
          Jiang, Heng Bo
        affil: School of Dentistry,, Faculty of Medical Sciences,, The University of the West Indies,, St. Augustine, Trinidad and Tobago, uwi.edu
      sug:
        subj:
          Dental Restoration, Permanent
          Dental Materials
          Printing, Three-Dimensional
          Dentistry Trends
          Technology, Dental Trends
          Materials Testing
          Dental Prosthesis Design
          Surface Properties
          Osseointegration
          Compressive Strength
          Cell Proliferation
          Computer-Aided Design
      ab: Additive manufacturing (AM) has gained significant traction in the dental field, yet its application in dental ceramics, specifically zirconia (ZrO2), is still evolving. ZrO2, a widely used biomaterial, has become popular in dental procedures due to its exceptional properties. Although subtractive technologies like milling and CAD/CAM are prevalent for ZrO2 restorations, they have limitations. The integration of AM in ceramic restoration production is a burgeoning area of research and industry interest globally, requiring a comprehensive understanding among dental professionals. This review paper explores various AM technologies for ZrO2 processing, discussing their advantages and future potential. The results indicate that while techniques like stereolithography and digital light processing can produce ZrO2 restorations with improved surface quality and dimensional accuracy, challenges such as porosity, reduced mechanical strength compared to conventional milling, and variability in sintering outcomes persist. The findings show encouraging potential for AM in ZrO2‐based restorative, implant, and regenerative dentistry. Despite this, more refinements and substantiation are needed before it can be widely adopted in clinical settings.
      pubtype: Academic Journal
      doctype:
        review
        tables/charts
        Journal Article
      ougenre: Article
    language: English
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