Shahid Beheshti University of Medical Sciences
  • Register
  • Login

Journal of Lasers in Medical Sciences

  • Home
  • Issues
    • Current Issue
    • Archives
  • Journal Info
    • About the Journal
    • Editorial Team
    • Indexing/Abstracting
    • Contact Us
  • Author Guideline
    • Submission Guide
    • Author Statement Form
    • Peer Review Process
    • Publication Fee
  • Ethics & Policies
    • Ethical Requirements
    • Authorship Rules
    • Withdrawal Regulations
    • Retraction Considerations
    • Privacy Statement
    • Licensing
    • Copyright Terms
  • Reviewer Guideline
  • New Submission
Advanced Search
  1. Home
  2. Archives
  3. Vol. 16 (2025): Continues Volume
  4. Original Article

Vol. 16 (2025)

Bahman 2025

Er:YAG Laser Versus Conventional Surface Treatment of Lithium Disilicate: In Vitro Study Er:YAG Laser as surface treatment in lithium disilicate

  • Cesar Manuel Poquioma Choque
  • Rodolfo Calle-Chavez
  • Fabricio Hinojosa Pedraza
  • Katherine Joselyn Atoche-Socola

Journal of Lasers in Medical Sciences, Vol. 16 (2025), 21 Bahman 2025 , Page e54
Published: 2025-11-15

  • View Article
  • Download
  • Cite
  • References
  • Statastics
  • Share

Abstract

Introduction: The high-power 2940 nm Er:YAG (erbium-doped yttrium aluminium garnet) laser increases the rough surface of lithium disilicate, increasing the bonding strength of ceramics when they are bonded to the tooth using resin matrix cement. This investigation aimed to compare the Er:YAG laser with the conventional surface treatment of lithium disilicate.

Methods: In this study, 50 lithium disilicate discs (5 mm diameter×2 mm thickness) were divided into five groups (n=10): Control group (CG) (10% hydrofluoric acid followed by 37% phosphoric acid), Group 1 (G1) (ER:YAG laser energy of 300 mJ/50 µs), Group 2 (G2) (Er:YAG laser energy of 400 mJ/50 µs), Group 3 (G3) (Er:YAG laser energy of 500 mJ/50 µs), and Group 4 (G4) (10% hydrofluoric acid, Er:YAG laser energy of 500 mJ/50 µs). After completing the surface treatments, 6 mm high Tygon was fixed and filled with self-adhesive dual resin cement (SET PP SDI Limited, Victoria, Australia). The samples were stored for 24 hours and subjected to shear tests until structural failure.

Results: ANOVA analysis found no statistically significant difference between the groups analyzed (P=0.0689). G2 had the highest bond strength with 12.6±3.2 MPa, while G1 had the lowest with 9.5±2.2 MPa, followed by the CG 9.8±3.2. It was observed that with higher laser irradiation power, the adhesive strength decreased, as evidenced in G3 with 11.6±1.9 MPa.

Conclusion: The radiation power of 400 mJ, frequency of 20 Hz, and pulse duration of 50 µs improved the bond strength between lithium disilicate and dual resin cement. However, the group that obtained the lowest strength was Group 3, with a laser energy of 500 mJ/50 µs, generating highly expulsive zones in lithium disilicate.

Keywords:
  • Erbium YAG; Lithium disilicate; Shear bond strength.
  • PDF

How to Cite

Poquioma Choque, C. M., Calle-Chavez, R., Hinojosa Pedraza, F., & Atoche-Socola, K. J. (2025). Er:YAG Laser Versus Conventional Surface Treatment of Lithium Disilicate: In Vitro Study: Er:YAG Laser as surface treatment in lithium disilicate. Journal of Lasers in Medical Sciences, 16, e54. Retrieved from https://journals.sbmu.ac.ir/jlms/article/view/48026
  • ACM
  • ACS
  • APA
  • ABNT
  • Chicago
  • Harvard
  • IEEE
  • MLA
  • Turabian
  • Vancouver
  • Endnote/Zotero/Mendeley (RIS)
  • BibTeX

References

Please see the references list in the PDF file.

  • Abstract Viewed: 97 times
  • PDF Downloaded: 91 times

Download Statastics

  • Linkedin
  • Twitter
  • Facebook
  • Google Plus
  • Telegram

Make a Submission

Make a Submission

Information

  • For Readers
  • For Authors
  • For Librarians

Developed By

Open Journal Systems
  • Home
  • Archives
  • Submissions
  • About the Journal
  • Editorial Team
  • Contact

Iranian Medical Laser Association 

                                        

 

This journal is distributed under the terms of CC BY-NC 4.0.
Design and publishing by SBMU journals. All credits and honors to PKP for their OJS. 

Powered by OJSPlus