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European Journal Of Dental Education· 2026Q1

Application of Personalized 3D ‐Printed Teeth Model Based on Clinical Cases in Endodontic Specialty Training

Qixuan Zhang, Shan Shan Hu, Peiru Jiang, Chengxiang Zheng et al.

Short summary

Personalized 3D-printed tooth models, created from real clinical cases, accurately replicate natural tooth anatomy and root canal morphology, serving as promising specialized teaching aids for endodontic root canal therapy practice.

AI-generated from the title and abstract; the full text is not read.

Key points

  • 3D-printed tooth models accurately replicated natural tooth anatomy and root canal morphology from clinical case data.
  • Trainees rated the instructional value of the models as moderately similar to natural teeth.
  • Material choice influenced the hardness of the 3D-printed models.
  • Trainees reported differences in handling perception between 3D-printed models and natural teeth during procedures.

AI-generated from the title and abstract; the full text is not read.

Abstract

OBJECTIVE: The aim of this study was to evaluate the applicative potential of 3D-printed teeth, designed from real clinical cases, in endodontic specialty training. METHODS: The study collected radiological data from clinical cases and performed 3D reconstruction. Through the data of 3D reconstruction, two 3D-printed materials were used to fabricate personalized, full-size, resin tooth models. These models were assigned to endodontic specialty trainees for root canal therapy practice in the dental simulator. A questionnaire was designed to evaluate trainees' perceptions of the similarity between 3D-printed tooth models and natural teeth, using a 5-point scale (1 = extremely dissimilar, 5 = extremely similar). RESULTS: The results indicated that the 3D-printed tooth models accurately replicated the anatomical shape and root canal morphology of natural teeth, closely resembling real clinical cases. Trainees perceived the instructional value of the 3D-printed models as moderately similar to that of natural teeth. However, the hardness of 3D-printed models varied depending on the material used. Trainees reported a noticeable difference in handling perception between all resin tooth models and natural teeth during operative procedures. CONCLUSION: Personalized 3D-printed tooth models-designed from real clinical cases with high anatomical accuracy and scalable production potential-demonstrate significant promise as specialized teaching aids for endodontic root canal therapy training. These models offer endodontic trainees the invaluable opportunity to practice on simulations of typical or complex clinical scenarios.

The authors' abstract, as published at the source. European Journal Of Dental Education, 2026 · DOI ↗

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Field: General Dentistry

General DentistryDentistry