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May 8, 2026BMC Oral Health0 citationsOpen Access

Robotic technologies in prosthodontics and implantology: a scoping review of current applications and future directions

HLHoney LunkadJazan UniversityAJAnkur JethliaJazan UniversityMSMohammed E. SayedJazan University

Key Points

  • This review aims to evaluate the applications, effectiveness, and limitations of robotic technologies in prosthodontics and implantology.
  • Systematic search across PubMed, SCOPUS, EMBASE, and Web of Science from January 2015 to May 2025
  • Included 21 studies based on predefined inclusion criteria and categorized by type
  • Data extracted from prosthetic dentistry, implant dentistry, and robotic development stages.
  • Prosthodontics robotic systems showed high accuracy with errors < 0.4 mm and positioning accuracy of 0.09 mm.
  • In implant dentistry, robots outperformed navigation systems with mean angular deviations < 2.81° and coronal/apical deviations < 1 mm.
  • Identified a need for robust clinical trials and cost-effective solutions for broader adoption.

Abstract

This scoping review synthesizes current evidence on the applications, effectiveness, workflow, and limitations of robotic technologies in prosthodontics and implant dentistry, focusing on their potential to enhance precision, reproducibility, and clinical outcomes. A systematic search was conducted across PubMed, SCOPUS, EMBASE, and Web of Science from January 2015 to May 2025, following PRISMA-ScR guidelines. Studies were screened and selected based on predefined inclusion criteria, with data extracted into categories of prosthetic dentistry, implant dentistry, and robotic development stages. Twenty-one studies were included (7 prosthodontics, 14 implantology). In prosthodontics, robotic systems demonstrated high accuracy in veneer and crown preparations (errors < 0.4 mm) and automated denture arch generation (positioning accuracy 0.09 mm). Implant dentistry studies revealed robotic systems (Yomi, Remebot) outperformed static/dynamic navigation in precision, with mean angular deviations < 2.81° and coronal/apical deviations < 1 mm. Semi-active and active robots dominated implant applications, while prosthodontic robots were primarily active but less clinically advanced. Robotic technologies hold transformative potential for implant and prosthetic dentistry, with higher precision and workflow efficiency. However, robust clinical trials and cost-effective solutions are needed for adoption of these systems in regular clinics.

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Cite This Study

Lunkad et al. (2026) studied this question.

synapsesocial.com/papers/69fd7ef7bfa21ec5bbf075b5https://doi.org/10.1186/s12903-026-08506-0
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