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April 22, 2026Journal of Dentistry0 citationsOpen Access

Digital fabrication accuracy and fit analysis of additively and subtractively manufactured zirconia fixed dental prostheses

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ETEleni TrikoiliMDMustafa Borga DönmezBKBegümÜnlü Kurşun

Key Points

  • The research aims to evaluate and compare the fabrication accuracy and fit of zirconia fixed dental prostheses produced by additive and subtractive methods.
  • Forty-five three-unit fixed dental prostheses were created using additive and subtractive techniques.
  • Digital analysis assessed surface deviations and average gaps to determine fit.
  • Statistical analysis was conducted using one-way ANOVA and Tukey or Tamhane tests.
  • Additive manufactured prostheses showed the highest surface deviations and lowest average gaps (P < .001).
  • No significant differences in deviations between subtractive methods were found (P ≥ 0.360).
  • Additive prostheses had lower fabrication trueness compared to subtractive methods, but all fits remained clinically acceptable.

Abstract

To compare the fabrication accuracy and fit of three-unit fixed dental prostheses (FDPs) manufactured additively from a 3Y-TZP slurry with those manufactured subtractively from a translucent or a strength-gradient zirconia. Forty-five three-unit posterior FDPs were fabricated either additively from a 3Y-TZP slurry (Cera-P, AM) or subtractively from a translucent (4Y-TZP, n!ce Zirconia HT, SM-HT) or a strength-gradient zirconia (3/5 Y-TZP, IPS e.max ZirCAD Prime, SM-SG) (n = 15). Surface deviations (external, intaglio, marginal, and overall) and average gaps (fit) of the FDPs were digitally analyzed. Data were analyzed with one-way analysis of variance and Tukey (surface deviations) or Tamhane tests (average gaps). Precision was defined as the average of measured values from the mean value, and analyzed similar to each outcome (α = 0.05). AM FDPs exhibited the highest deviations across all surfaces but the lowest gaps ( P < .001) and no significant differences were detected between SM-HT and SM-SG ( P ≥ 0.360). There was no difference in the precision of measured deviations ( P ≥ 0.057). When the precision of average gap values was considered, AM FDPs had higher values than SM-SG FDPs ( P = 0.024). AM FDPs demonstrated the lowest fabrication trueness, while SM-SG and SM-HT FDPs had similar fabrication accuracy. Although AM FDPs exhibited improved fit, their fit precision was inferior to SM-SG FDPs, whereas SM-SG and SM-HT FDPs had similar fit accuracy. The fit of all FDPs remained within clinically acceptable limits.

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Cite This Study

Trikoili et al. (2026) studied this question.

synapsesocial.com/papers/69e864866e0dea528dde95afhttps://doi.org/10.1016/j.jdent.2026.106712
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