Noncontact Er:YAG laser ablation: clinical evaluation.

OBJECTIVE The aim of this study is to evaluate the quality of laser ablation in comparison with the classical drilling preparation. METHODS For the experiment, the Er:YAG laser drilling machine was used. The system had a laser head, water cooler, and power supply with automatic control. Spot size of 300-350 microns was used for the preparation. Repetition rate of 1-4 Hz, and pulse energies of 100-400 mJ with water spray were chosen. Cavity shape in comparison with classical drill, time of preparation, and influence of cavity shape on filling materials retention in accordance with the U.S. Public Health Service System were used. The evaluation criteria for noncontact Er:YAG ablation were done. RESULTS The cavity shape is irregular, but spot surface has larger area and microretentive appearance. Caries of enamel and dentin were treated with a noncontact preparation. It was possible to remove the old insufficient fillings, except for amalgam or metal alloys. The average number of pulses was 111.22 (SE 67.57). Vibrations of microexplosions during preparation were felt by patients on 14 cavities; however, nobody felt unpleasant pain. The qualities of filling materials in laser cavities were very stable; however, cavo surface margin discoloration of 82-86% of Alfa rating could be a problem. Changes of the color and anatomic form of the tooth were observed in 4-8%. CONCLUSIONS In comparison with the classical treatment, it could be said that the retention and quality of filling materials is the same or very similar.

[1]  M. Cochran,et al.  Longevity of glass-ionomer restorative materials: results of a 10-year evaluation. , 1996, Quintessence international.

[2]  H. Wigdor Patients' perception of lasers in dentistry , 1997, Lasers in surgery and medicine.

[3]  Raimund Hibst,et al.  Effects of Er:YAG laser in caries treatment: A clinical pilot study , 1997 .

[4]  Terry D. Myers,et al.  Effects of a pulsed Nd:YAG laser on enamel and dentin , 1990, Photonics West - Lasers and Applications in Science and Engineering.

[5]  Peter Rechmann,et al.  Caries selective ablation: effects of water cooling , 1994, Other Conferences.

[6]  O Krejsa,et al.  Dentin and pulp response to Erbium:YAG laser ablation: a preliminary evaluation of human teeth. , 1997, Journal of clinical laser medicine & surgery.

[7]  Raimund Hibst,et al.  Heat effect of pulsed Er:YAG laser radiation , 1990, Photonics West - Lasers and Applications in Science and Engineering.

[8]  Kazuhiko Atsumi,et al.  Laser Surgery: Advanced Characterization, Therapeutics, and Systems II , 1989 .

[9]  Helena Jelinkova,et al.  Clinical evaluation of Er:YAG laser caries treatment , 1997, Photonics West - Biomedical Optics.

[10]  Raimund Hibst,et al.  Er:YAG laser for dentistry: basics, actual questions, and perspectives , 1994, Other Conferences.