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Updated: Sep 19, 2025

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Enhancing Prosthetic Nasal Rehabilitation Through Digital Technology.

Denny Chao1, Mary Lou J Murtha2, Jay Jayanetti2

  • 1Section of Prosthodontics, Division of Regenerative and Reconstructive Sciences, School of Dentistry, University of California, Los Angeles, USA.

Special Care in Dentistry : Official Publication of the American Association of Hospital Dentists, the Academy of Dentistry for the Handicapped, and the American Society for Geriatric Dentistry
|June 17, 2025
PubMed
Summary

Digital technologies streamline nasal defect rehabilitation, enhancing accuracy and accessibility for patients. This innovation improves prosthetic fitting and patient well-being after nasal reconstruction.

Keywords:
3D printingcomputer‐aided designcomputer‐aided manufacturingdigitalmaxillofacialnasalprosthesisrhinectomyscanners

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Area of Science:

  • Biomedical Engineering
  • Prosthodontics
  • Digital Dentistry

Background:

  • Nasal defects significantly impact psychosocial well-being, necessitating effective prosthetic rehabilitation.
  • Traditional nasal rehabilitation methods are labor-intensive and require specialized expertise.

Purpose of the Study:

  • To explore the integration of digital technologies in rehabilitating patients with nasal defects.
  • To assess how digital tools improve accuracy, efficiency, and patient outcomes in nasal prosthetics.

Main Methods:

  • Utilizing intraoral and extraoral scanners for precise facial data acquisition.
  • Employing virtual implant planning software and 3D printing for designing and fabricating nasal stents and prostheses.
  • Implementing craniofacial endosseous implants with digitally guided surgical plans for enhanced prosthesis retention.

Main Results:

  • Digital tools have streamlined the prosthetic nasal rehabilitation process, reducing manual effort and expertise requirements.
  • 3D printing enables the creation of aesthetic and biocompatible nasal stents.
  • Digitally planned craniofacial implants improve nasal prosthesis retention and patient satisfaction.

Conclusions:

  • Digital technologies enhance the precision and efficiency of nasal defect rehabilitation.
  • This integrated digital approach makes high-quality, personalized nasal prosthetics more accessible.
  • The innovative methods improve the overall patient experience and outcomes in managing nasal defects.