Literature DB >> 10872964

Effects of diode and Nd:YAG laser irradiation on titanium discs: a scanning electron microscope examination.

G E Romanos1, H Everts, G H Nentwig.   

Abstract

BACKGROUND: Dental lasers have been recommended for uncovering submerged implants as well as decontaminating implant surfaces when treating peri-implantitis. The aim of this study was to show the possible alterations in titanium disc surfaces using an Nd:YAG or a diode laser.
METHODS: Three different titanium discs were used (sandblasted, titanium plasma-sprayed [TPS], and hydroxyapatite [HA] coated) to determine the effects of laser irradiation on these surfaces using a scanning electron microscope (SEM). The discs were either irradiated with a pulsed Nd:YAG laser with a contact handpiece and power settings of 2.0, 4.0, and 6.0 W or with a diode laser at 5.0, 10.0, and 15.0 W power settings and continuous wave (cw) in the contact handpiece. Irradiated areas were compared with control titanium sites which were not lased. The specimens were prepared for SEM examination after the disc irradiation.
RESULTS: The SEM examination demonstrated extensive melting in all of the Nd:YAG laser irradiated areas. Damage was seen in all TPS- and HA-coated discs even at the lowest power setting. Loss of porosity, coating microfractures, and a relatively smooth surface were observed. In contrast, the diode laser did not cause any damage or modify the disc surface. Regardless of the power setting, there was no visible difference between lased and non-lased surfaces after cw irradiation with the diode laser.
CONCLUSIONS: From these findings, it was concluded that the diode laser (980 nm) does not damage titanium surfaces, which should be of value when uncovering submerged implants and treating peri-implantitis.

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Year:  2000        PMID: 10872964     DOI: 10.1902/jop.2000.71.5.810

Source DB:  PubMed          Journal:  J Periodontol        ISSN: 0022-3492            Impact factor:   6.993


  35 in total

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2.  A high-throughput comparative characterization of laser-induced soft tissue damage using 3D digital microscopy.

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3.  Influence of different treatment approaches on the removal of early plaque biofilms and the viability of SAOS2 osteoblasts grown on titanium implants.

Authors:  Frank Schwarz; Anton Sculean; Georg Romanos; Monika Herten; Nadine Horn; Werner Scherbaum; Jürgen Becker
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Review 4.  Laser applications in oral surgery and implant dentistry.

Authors:  Herbert Deppe; Hans-Henning Horch
Journal:  Lasers Med Sci       Date:  2007-02-01       Impact factor: 3.161

5.  Nonsurgical treatment of moderate and advanced periimplantitis lesions: a controlled clinical study.

Authors:  Frank Schwarz; Katrin Bieling; Martin Bonsmann; Thilo Latz; Jürgen Becker
Journal:  Clin Oral Investig       Date:  2006-09-13       Impact factor: 3.573

Review 6.  Laser wavelengths and oral implantology.

Authors:  George E Romanos; Norbert Gutknecht; Sandra Dieter; Frank Schwarz; Roberto Crespi; Anton Sculean
Journal:  Lasers Med Sci       Date:  2009-05-09       Impact factor: 3.161

7.  Re-stability of dental implants following treatment of peri-implantitis.

Authors:  Fawad Javed; Hamza Ather Hussain; Georgios E Romanos
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8.  Laser-treated stainless steel mini-screw implants: 3D surface roughness, bone-implant contact, and fracture resistance analysis.

Authors:  He-Kyong Kang; Tien-Min Chu; Paul Dechow; Kelton Stewart; Hee-Moon Kyung; Sean Shih-Yao Liu
Journal:  Eur J Orthod       Date:  2015-04-23       Impact factor: 3.075

Review 9.  Influence of low-level laser therapy on biomaterial osseointegration: a mini-review.

Authors:  Radmila R Obradović; Ljiljana G Kesić; Svetlana Pesevska
Journal:  Lasers Med Sci       Date:  2008-06-20       Impact factor: 3.161

10.  Surface alterations of zirconia and titanium substrates after Er,Cr:YSGG irradiation.

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Journal:  Lasers Med Sci       Date:  2014-01-16       Impact factor: 3.161

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