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Journal ArticleDOI

Current Status of Lasers in Soft Tissue Dental Surgery

TLDR
Of the two types of lasers currently available for dental applications, both the CO2 and Nd:YAG lasers can be used for frenectomies, ablation of lesions, incisional and excisional biopsies, gingivoplasties, soft tissue tuberosity reductions, operculum removal, coagulation of graft donor sites, and certain crown lengthening procedures.
Abstract
The aims of this paper are to briefly describe laser physics, the types of lasers currently available for use on soft tissues focusing primarily on CO2 and Nd:YAG laser energies, the histological effects of lasers on oral tissues, laser safety, the clinical applications of lasers on oral soft tissues, and future directions. Of the two types of lasers currently available for dental applications, both the CO2 and Nd:YAG lasers can be used for frenectomies, ablation of lesions, incisional and excisional biopsies, gingivectomies, gingivoplasties, soft tissue tuberosity reductions, operculum removal, coagulation of graft donor sites, and certain crown lengthening procedures. The advantages of lasers include a relatively bloodless surgical and post-surgical course, minimal swelling and scarring, coagulation, vaporization, and cutting, minimal or no suturing, reduction in surgical time, and, in a majority of cases, much less or no post-surgical pain. CO2 lasers, compared to Nd:YAG are faster for most procedures, with less depth of tissue penetration and a well-documented history. There have been recent reports on the use of the Nd:YAG laser for periodontal scaling, gingival curettage, and root desensitization, but further research needs to be conducted. Both the CO2 and the Nd:YAG laser have limited use in conventional flap therapy.

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Citations
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Journal ArticleDOI

Lasers in nonsurgical periodontal therapy.

TL;DR: This article reviews the current and potential applications of laser technology in nonsurgical therapy for the treatment of periodontal diseases and describes the advantages and disadvantages of various laser types.
Journal ArticleDOI

Periodontal and peri‐implant wound healing following laser therapy

TL;DR: The outcomes of laser therapy in soft-tissue management, periodontal nonsurgical and surgical treatment, osseous surgery and peri-implant treatment are discussed, focusing on postoperative wound healing ofperiodontal and pero-IMplant tissues.
Journal ArticleDOI

Effects on oral soft tissue produced by a diode laser in vitro.

TL;DR: This investigation determined incision characteristics and soft‐tissue damage resulting from standardized incisions using a wide range of laser modes and parameters of a diode laser at 810 nm.
Journal ArticleDOI

Lethal photosensitization for decontamination of implant surfaces in the treatment of peri-implantitis.

TL;DR: It was found that the combined treatment reduced the bacterial counts by 2 log steps on average, and the application of TBO and laser resulted in a significant reduction of the initial values in all 3 groups of bacteria.
References
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Journal ArticleDOI

Stimulated Optical Radiation in Ruby

TL;DR: Schawlow and Townes as discussed by the authors proposed a technique for the generation of very monochromatic radiation in the infra-red optical region of the spectrum using an alkali vapour as the active medium.
Journal Article

Stimulated optical radiation in ruby

T. H. Maiman
TL;DR: Schawlow and Townes as discussed by the authors proposed a technique for the generation of very monochromatic radiation in the infra-red optical region of the spectrum using an alkali vapour as the active medium.
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Infrared and optical masers

TL;DR: In this article, it was shown that by using a resonant cavity of centimeter dimensions, having many resonant modes, maser oscillation at these wavelengths can be achieved by pumping with reasonable amounts of incoherent light.
Journal Article

Zur Quantentheorie der Strahlung

TL;DR: In this paper, the spectral distribution curve of temperature radiation was shown to be similar to the velocity distribution of the electromagnetic spectrum of a single photon, and the formal similarity of spectral distribution curves to Maxwell's velocity distribution curve was revealed.

Zur Quantentheorie der Strahlung

TL;DR: In this paper, the spectral distribution curve of temperature radiation was shown to be similar to the velocity distribution of the electromagnetic spectrum of a single photon, and the formal similarity of spectral distribution curves to Maxwell's velocity distribution curve was revealed.
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