| Literature DB >> 27462611 |
Yves Saydjari1, Thorsten Kuypers2, Norbert Gutknecht3.
Abstract
Objective. In endodontics, Nd:YAG laser (1064 nm) and diode laser (810 nm and 980 nm) devices are used to remove bacteria in infected teeth. A literature review was elaborated to compare and evaluate the advantages and disadvantages of using these lasers. Methods. Using combined search terms, eligible articles were retrieved from PubMed and printed journals. The initial search yielded 40 titles and 27 articles were assigned to full-text analysis. The studies were classified based upon laser source, laser energy level, duration/similarity of application, and initial and final bacterial count at a minimum of 20 prepared root canals. Part of the analysis was only reduced microorganisms and mechanically treated root canals upon preparation size of ISO 30. All studies were compared to evaluate the most favorable laser device for best results in endodontic therapy. Results. A total of 22 eligible studies were found regarding Nd:YAG laser 1064 nm. Four studies fulfilled all demanded criteria. Seven studies referring to the diode laser 980 nm were examined, although only one fulfilled all criteria. Eleven studies were found regarding the diode laser 810 nm, although only one study fulfilled all necessary criteria. Conclusions. Laser therapy is effective in endodontics, although a comparison of efficiency between the laser devices is not possible at present due to different study designs, materials, and equipment.Entities:
Mesh:
Year: 2016 PMID: 27462611 PMCID: PMC4947651 DOI: 10.1155/2016/8421656
Source DB: PubMed Journal: Biomed Res Int Impact factor: 3.411
Figure 1Schematic representation of the canal ramifications of teeth 13 and 24 by Blechschmidt and Meyer. A portion leads to the periodontal ligament, while another ends blindly in the dentin [20].
Lasers in dentistry.
| Laser device | Use in dentistry | Wavelength |
|---|---|---|
| Neodymium:YAG laser (Nd:YAG laser) | Surgery, endodontics, and periodontics | 1064 nm |
| Erbium:YAG laser (Er:YAG laser), erbium, and chromium:YSGG laser (Er, CR:YSGG laser) | Surgery, endodontics, and cavity preparation | 2940 nm, 2780 nm |
| Diode laser | Surgery, endodontics, and periodontics | 810–980 nm |
| CO2 laser | Surgery | 10600 nm |
Keywords used to research and their number of results on the website http://www.ncbi.nlm.nih.gov/pubmed.
| Search keyword | Results |
|---|---|
| Laser in dentistry | 6688 |
| Laser, endodontics | 795 |
| Diode laser, in dentistry | 614 |
| Nd:YAG-laser, in dentistry | 532 |
| Nd:YAG-laser, root canal | 160 |
| Nd:YAG-laser, endodontics | 143 |
| Diode laser, root canal | 100 |
| Diode laser, endodontics | 98 |
| Laser, root canal | 37 |
Figure 2Presentation of search strategy for Nd:YAG laser 1064 nm.
Figure 3Presentation of search strategy for diode laser 980 nm.
Figure 4Presentation of search strategy for diode laser 810 nm.
Overview of comparable studies for Nd:YAG 1064 nm.
| Year of publication | First author | Study design | Title |
|---|---|---|---|
| 1999 | Moritz [ | In vitro | The bactericidal effect of Nd:YAG, Ho:YAG, and Er:YAG laser irradiation in the root canal: an in vitro comparison |
| 1997 | Moritz [ | In vivo | Nd:YAG laser irradiation of infected root canals in combination with microbiological examinations |
| 1996 | Gutknecht [ | In vivo | Long-term clinical evaluation of endodontically treated teeth by Nd:YAG lasers |
| 1996 | Gutknecht [ | In vitro | Bactericidal effect of the Nd:YAG laser in in vitro root canals |
One study for the diode laser 810 nm matches all demanded criteria.
| Year of publication | First author | Study design | Title |
|---|---|---|---|
| 2012 | Beer [ | Extracted teeth | Comparison of two diode lasers on bactericidity in root canals—an in vitro study |
One study for the diode laser 980 nm matches all demanded criteria.
| Year of publication | First author | Study design | Title |
|---|---|---|---|
| 2006 | Schoop [ | Dentin cuts | Innovative wavelengths in endodontic treatment |
Listing of additional mentioned studies with different parameters as they occur in the text.
| Year of publication | First author | Title |
|---|---|---|
| 1983 | Eriksson [ | Innovative wavelengths in endodontic treatment |
| 1998 | Farge [ | In vitro study of a Nd:YAP laser in endodontic retreatment |
| 1999 | Lan [ | Temperature elevation on the root surface during Nd:YAG laser irradiation in the root canal |
| 1997 | Ramsköld [ | Thermal effects and antibacterial properties of energy levels required to sterilize stained root canals with an Nd:YAG laser |
| 1995 | Weller [ | In vitro radicular temperatures produced by injectable thermoplasticized gutta-percha |
| 2001 | Mazaheri [ | Temperaturentwicklung auf der wurzeloberfläche bei einer endodontischen behandlung mit einem diodenlaser |
| 2000 | Gutknecht [ | Diode laser radiation and its bactericidal effect in root canal wall dentin |
| 1993 | Behrens [ | Die transmission und absorption der temperatur und energie des Nd-YAG-lasers im dentin |
| 2013 | Sadik [ | Effects of laser treatment on endodontic pathogen |
| 2004 | Gutknecht [ | Irradiation of infected root canals with Nd:YAG lasers. A review |
| 1997 | Klinke [ | Antibacterial effects of Nd:YAG laser irradiation within root canal dentin |
| 2011 | Pirnat [ | Study of the direct bactericidal effect of Nd:YAG and diode laser parameters used in endodontics on pigmented and nonpigmented bacteria |
| 1999 | Neuman [ | Characterization of photodamage to |
| 2008 | Mirsaidov [ | Optimal optical trap for bacterial viability |
| 2012 | Meire [ | In vitro inactivation of endodontic pathogens with Nd:YAG and Er:YAG lasers |
| 2007 | de Paz [ | Redefining the persistent infection in root canals: possible role of biofilm communities |
| 1985 | Nair [ | Root canal and periapical flora: a light and electron microscopy study |
| 1997 | Klinke [ | Antibacterial effects of Nd:YAG laser irradiation within root canal dentin |
| 1996 | Odor [ | Pattern of transmission of laser light in teeth |
| 1995 | Vaarkamp [ | Propagation of light through human dental enamel and dentine |
| 1997 | Jalil [ | Surface topography of enamel and dentine from primary teeth following infrared Nd-YAG laser irradiation: an in vitro study |
| 1994 | Hardee [ | Evaluation of the antibacterial effects of intracanal Nd:YAG laser irradiation |
| 1997 | Moritz [ | Irradiation of infected root canals with a diode laser in vivo: results of microbiological examinations |
| 1993 | Kales [ | Review and forecast of laser markets |
| 2014 | Kanumuru [ | Efficacy of Ca(oH)2 against |