Human dental enamel and dentin structural effects after Er:YAG laser irradiation

J Contemp Dent Pract. 2014 May 1;15(3):283-7. doi: 10.5005/jp-journals-10024-1529.

Abstract

Ideally projected to be applied on soft tissues, infrared lasers were improved by restorative dentistry to be used in hard dental tissues cavity preparations--namely enamel and dentin. This paper evidentiates the relevant aspects of infrared Erbium laser's action mechanism and its effects, and characterizes the different effects deriving from the laser's beams emission. The criteria for use and selection of optimal parameters for the correct application of laser systems and influence of supporting factors on the process, such as water amount and its presence in the ablation process, protection exerted by the plasma shielding and structural factors, which are indispensable in dental tissues cavity preparation related to restorative technique, are subordinated to optical modifications caused by the interaction of the energy dissipated by these laser light emission systems in the targeted tissue substrate.

Clinical relevance: Differences in the action of infrared Erbium laser system in regard to the nature of the ablation process and variations on the morphological aspects observed in the superficial structure of the target tissue irradiated, may be correlated to the structural optical modifications of the substrate produced by an interaction of the energy propagated by laser systems.

MeSH terms

  • Absorption, Physicochemical
  • Crystallography
  • Dental Cavity Preparation / methods
  • Dental Enamel / chemistry
  • Dental Enamel / surgery
  • Dental Enamel / ultrastructure*
  • Dentin / chemistry
  • Dentin / surgery
  • Dentin / ultrastructure*
  • Electromagnetic Radiation
  • Humans
  • Laser Therapy / methods*
  • Lasers, Solid-State / therapeutic use*
  • Microscopy, Electron, Scanning
  • Plasma Gases / chemistry
  • Radiometry
  • Temperature
  • Thermodynamics
  • Volatilization
  • Water / chemistry

Substances

  • Plasma Gases
  • Water