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Related Experiment Video

Updated: Feb 10, 2026

Fabrication of Engineered Vascular Flaps Using 3D Printing Technologies
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Customised spectacles using 3-D printing technology.

Onder Ayyildiz1

  • 1Department of Ophthalmology, Gulhane Training and Research Hospital, Ankara, Turkey.

Clinical & Experimental Optometry
|May 18, 2018
PubMed
Summary

Customised 3-D printed spectacles offer a novel solution for patients, including children with facial deformities. This 3-D printing method ensures precise fit, superior comfort, and optimal optical alignment.

Keywords:
3-D printingcustomised spectaclesfacial deformitiesframe fitting

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Area of Science:

  • Biomedical Engineering
  • Materials Science
  • Ophthalmology

Background:

  • Traditional spectacle manufacturing can be time-consuming and may not adequately address unique patient needs.
  • Facial deformities present challenges in achieving a proper fit and optimal optical correction with conventional eyewear.
  • There is a need for innovative, patient-specific solutions in spectacle design and production.

Purpose of the Study:

  • To introduce and evaluate a novel method for prototyping and manufacturing customized spectacles using 3-D printing technology.
  • To assess the feasibility and effectiveness of 3-D printed spectacles for patients requiring precise optical alignment and comfort.

Main Methods:

  • A five-step procedure was employed: patient selection, surface topography acquisition, phantom model 3-D printing, spectacle 3-D designing, and final spectacle 3-D printing.
  • Utilized 3-D printing technology for both the initial phantom model and the final spectacle frames.

Main Results:

  • The manufacturing process for 3-D printed spectacles took 14 hours, with a total cost of AUD$160.00 and a weight of 7g.
  • The 3-D printed spectacles demonstrated a precise fit, superior comfort, acceptable cosmesis, and optimal optical alignment compared to conventional spectacles.
  • No adjustments were required one month post-fitting, indicating long-term stability and patient satisfaction.

Conclusions:

  • Customized 3-D printed spectacles represent a viable and accurate alternative for patients, particularly those with facial deformities.
  • This 3-D printing technique can effectively maximize optical alignment and comfort, addressing the specific needs of diverse patient populations.
  • The study highlights the potential of 3-D printing to revolutionize spectacle manufacturing, offering tailored solutions for improved visual outcomes.