Adjustment of CAD–CAM crowns with and without a 3D-printed model: Comparative study of marginal fit
Document Type
Article
Publication Date
7-9-2026
Publication Title
Journal of Prosthodontics
Abstract
Purpose: This study evaluated and compared the marginal fit of CAD–CAM zirconia crown copings with and without a 3D-printed control model. Materials and Methods: This prospective in vitro trial involved 30 zirconia crown copings made from the same STL file. These were divided into two groups. Half of them had their own 3D-printed control model made from the same STL file (With-Printed-Model group), whereas the other half lacked any control model (No-Printed-Model group). Both groups underwent manual adjustments in a systematic way. Their marginal gaps were evaluated using a digital optical microscope from eight zones: buccal, mesiobuccal, mesial, mesiopalatal, palatal, distopalatal, distal, and distobuccal. Results: The mean values with standard deviations for the With-Printed-Model and No-Printed-Model groups were 15.18 ± 14.49 and 12.46 ± 14.09 µm, respectively. All crown copings from both groups were below 75 µm. Statistical analysis showed a significant difference between the two groups. Conclusion: The No-Printed-Model group demonstrated superior marginal fit compared to the With-Printed-Model group. However, the largest marginal gaps from each group were still within the clinically acceptable range below 75 µm. Although the 3D-printed control model did not improve marginal fit, its primary function is to effectively identify major manufacturing errors.
PubMed ID
42423264
Creative Commons License

This work is licensed under a Creative Commons Attribution 4.0 International License.
Recommended Citation
Al Akkad, Marwan; Yigit, Bedirhan Savas; Voborna, Iva; Prokupek, Vaclav; Fasanya, Oluwafunmibi; Salinas, Thomas; and Mounajjed, Radek, "Adjustment of CAD–CAM crowns with and without a 3D-printed model: Comparative study of marginal fit" (2026). School of Public Health Faculty Publications. 602.
https://digitalscholar.lsuhsc.edu/soph_facpubs/602
10.1111/jopr.70190