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RETRACTED: Pérez-Albacete Martínez et al. Evaluation of a New Dental Implant Cervical Design in Comparison with a Conventional Design in an Experimental American Foxhound Model. <i>Materials</i> 2018, <i>11</i>, 462.

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Related Experiment Video

Updated: Jan 9, 2026

Digital Hybrid Model Preparation for Virtual Planning of Reconstructive Dentoalveolar Surgical Procedures
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Optimizing digital workflow for esthetic restorations.

Artiom Lijnev1, Pep Serra2, Carlos Pérez-Albacete Martínez3

  • 1Adjunct Professor, Department of Biomaterials Engineering, Faculty of Medicine, Universidad Católica de Murcia (UCAM), Murcia, Spain.

The Journal of Prosthetic Dentistry
|December 10, 2025
PubMed
Summary

Artificial intelligence in dentistry improves restorative procedures. Digitally assisted workflows enhance predictability and precision for esthetic dental treatments like porcelain veneers.

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Area of Science:

  • Dentistry
  • Digital Dentistry
  • Restorative Dentistry

Background:

  • Esthetic dental treatments aim for biological respect, esthetic harmony, and anatomical precision.
  • Traditionally, achieving predictable outcomes in restorative dentistry requires significant clinical expertise and intervention.
  • Advancements in digital technology offer potential solutions for enhancing treatment reliability.

Purpose of the Study:

  • To present a conceptual overview and clinical application of AI-driven digitally assisted dentistry.
  • To evaluate the efficacy of the Bright Corus protocol for porcelain veneer placement.
  • To demonstrate how AI can unify and guide precision workflows in restorative procedures.

Main Methods:

  • A case study involving a 24-year-old female patient seeking esthetic enhancement.
  • Application of the Bright Corus protocol for porcelain veneer placement.
  • Utilizing an AI-driven, digitally assisted workflow for treatment planning and execution.

Main Results:

  • The porcelain veneer treatment resulted in a biologically respectful, esthetically harmonious, and anatomically precise outcome.
  • The procedure demonstrated minimal human intervention and a high degree of predictability.
  • The AI-driven workflow facilitated a unified, precision-guided approach.

Conclusions:

  • AI-driven digitally assisted dentistry significantly enhances the reliability of restorative procedures.
  • The Bright Corus protocol, when integrated with AI, offers predictable and precise esthetic solutions.
  • Precision-guided digital workflows represent the future of advanced restorative dentistry.