Literature DB >> 21274734

Temperature change during non-contact diode laser irradiation of implant surfaces.

Alessandro Geminiani1, Jack G Caton, Georgios E Romanos.   

Abstract

A temperature increase of more than 10°C can compromise bone vitality. Laser radiation with different wavelengths has been used for the treatment of peri-implantitis, but little is known about the effect of laser irradiation on temperature rise on the implant surface. In this study, the temperature gradient (∆T) generated by laser irradiation of implant surface using two diode lasers (810 nm and a 980 nm) with 2 W of power has been recorded by two thermocouples (one in the cervical area and one in the apical area) and studied. The 810-nm diode laser showed the following results: after 60 s of irradiation with 2 W of continuous mode the temperature gradient in the cervical area of the implant (∆Tc) was 37.2°C, while in the apical area (∆Ta) was 27.2°C. The 980-nm diode laser showed the following results: after 60 s of irradiation with 2 W continuous mode ∆Tc was 41.1°C, and ∆Ta was 30.6°C. The 810-nm diode laser with 2 W continuous mode generated a temperature increase of 10°C after only 14 s. The 980-nm diode lasers groups produced a much more rapid temperature increase. In only 12 s, the continuous wave of 980 nm reached the 10°C temperature rise. From the present in vitro study it was concluded that the irradiation of implant surfaces with diode lasers may produce a temperature increase above the critical threshold (10°C ) after only 10 s.

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Year:  2011        PMID: 21274734     DOI: 10.1007/s10103-010-0876-8

Source DB:  PubMed          Journal:  Lasers Med Sci        ISSN: 0268-8921            Impact factor:   3.161


  22 in total

1.  Diode laser (980 nm) in oral and maxillofacial surgical procedures: clinical observations based on clinical applications.

Authors:  G Romanos; G H Nentwig
Journal:  J Clin Laser Med Surg       Date:  1999-10

2.  The effects of two air-powder abrasive prophylaxis systems on the surface of machined titanium: a pilot study.

Authors:  S Koka; J Han; M E Razzoog; T J Bloem
Journal:  Implant Dent       Date:  1992       Impact factor: 2.454

3.  Effects of an air-powder abrasive system on plasma-sprayed titanium implant surfaces: an in vitro evaluation.

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Journal:  J Oral Implantol       Date:  1989       Impact factor: 1.779

4.  Using a diode laser to uncover dental implants in second-stage surgery.

Authors:  Sam Yeh; Kamlesh Jain; Sebastiano Andreana
Journal:  Gen Dent       Date:  2005 Nov-Dec

Review 5.  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

Review 6.  The long-term efficacy of currently used dental implants: a review and proposed criteria of success.

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Journal:  Int J Oral Maxillofac Implants       Date:  1986       Impact factor: 2.804

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Journal:  J Oral Maxillofac Surg       Date:  1984-11       Impact factor: 1.895

8.  Bacteria in supragingival plaque samples can be killed by low-power laser light in the presence of a photosensitizer.

Authors:  M Wilson; T Burns; J Pratten; G J Pearson
Journal:  J Appl Bacteriol       Date:  1995-05

9.  Fibroblastic growth and attachment on hydroxyapatite-coated titanium surfaces following the use of various detoxification modalities. Part II: Contaminated hydroxyapatite.

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Journal:  Implant Dent       Date:  1992       Impact factor: 2.454

10.  Assessment of bone viability after heat trauma. A histological, histochemical and vital microscopic study in the rabbit.

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  14 in total

1.  Laser-assisted surgery with different wavelengths: a preliminary ex vivo study on thermal increase and histological evaluation.

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Journal:  Lasers Med Sci       Date:  2012-04-14       Impact factor: 3.161

2.  LANAP, Periodontics and Beyond: A Review.

Authors:  Amrita Jha; Vivek Gupta; Roopa Adinarayan
Journal:  J Lasers Med Sci       Date:  2018-03-20

3.  Thermodynamic effects of laser irradiation of implants placed in bone: an in vitro study.

Authors:  Chris Leja; Alessandro Geminiani; Jack Caton; Georgios E Romanos
Journal:  Lasers Med Sci       Date:  2012-10-10       Impact factor: 3.161

4.  Different laser wavelengths comparison in the second-stage implant surgery: an ex vivo study.

Authors:  Carlo Fornaini; Elisabetta Merigo; Paolo Vescovi; Mauro Bonanini; Walter Antonietti; Luca Leoci; Giuseppe Lagori; Marco Meleti
Journal:  Lasers Med Sci       Date:  2014-07-03       Impact factor: 3.161

5.  Temperature evaluation of dental implant surface irradiated with high-power diode laser.

Authors:  F G Rios; E R Viana; G M Ribeiro; J C González; A Abelenda; D C Peruzzo
Journal:  Lasers Med Sci       Date:  2016-06-30       Impact factor: 3.161

6.  Thermal effects of λ = 808 nm GaAlAs diode laser irradiation on different titanium surfaces.

Authors:  Marco Giannelli; Massimo Lasagni; Daniele Bani
Journal:  Lasers Med Sci       Date:  2015-09-30       Impact factor: 3.161

7.  Evaluation of temperature rise following the application of diode and ErCr:Ysgg lasers: an ex vivo study.

Authors:  Alper Sindel; Ömür Dereci; Mükerrem Hatipoğlu; Öznur Özalp; Olgu Nur Dereci; Burak Kocabalkan; Adnan Öztürk
Journal:  Eur Oral Res       Date:  2018-09-01

8.  The effect of photodynamic therapy on Aggregatibacter actinomycetemcomitans attached to surface-modified titanium.

Authors:  Kyungwon Cho; Si Young Lee; Beom-Seok Chang; Heung-Sik Um; Jae-Kwan Lee
Journal:  J Periodontal Implant Sci       Date:  2015-04-29       Impact factor: 2.614

9.  Laser welded versus resistance spot welded bone implants: analysis of the thermal increase and strength.

Authors:  Carlo Fornaini; Marco Meleti; Mauro Bonanini; Giuseppe Lagori; Paolo Vescovi; Elisabetta Merigo; Samir Nammour
Journal:  ScientificWorldJournal       Date:  2014-07-03

Review 10.  Current concepts in the use of lasers in periodontal and implant dentistry.

Authors:  Georgios Romanos
Journal:  J Indian Soc Periodontol       Date:  2015 Sep-Oct
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