Skip to main content
Erschienen in: Lasers in Medical Science 4/2016

09.02.2016 | Original Article

Influence of lasing parameters on the cleaning efficacy of laser-activated irrigation with pulsed erbium lasers

verfasst von: Maarten A. Meire, Sophie Havelaerts, Roeland J. De Moor

Erschienen in: Lasers in Medical Science | Ausgabe 4/2016

Einloggen, um Zugang zu erhalten

Abstract

Laser-activated irrigation (LAI) using erbium lasers is an irrigant agitation technique with great potential for improved cleaning of the root canal system, as shown in many in vitro studies. However, lasing parameters for LAI vary considerably and their influence remains unclear. Therefore, this study sought to investigate the influence of pulse energy, pulse frequency, pulse length, irradiation time and fibre tip shape, position and diameter on the cleaning efficacy of LAI. Transparent resin blocks containing standardized root canals (apical diameter of 0.4 mm, 6 % taper, 15 mm long, with a coronal reservoir) were used as the test model. A standardized groove in the apical part of each canal wall was packed with stained dentin debris. The canals were filled with irrigant, which was activated by an erbium: yttrium aluminium garnet (Er:YAG) laser (2940 nm, AT Fidelis, Fotona, Ljubljana, Slovenia). In each experiment, one laser parameter was varied, while the others remained constant. In this way, the influence of pulse energy (10–40 mJ), pulse length (50–1000 μs), frequency (5–30 Hz), irradiation time (5–40 s) and fibre tip shape (flat or conical), position (pulp chamber, canal entrance, next to groove) and diameter (300–600 μm) was determined by treating 20 canals per parameter. The amount of debris remaining in the groove after each LAI procedure was scored and compared among the different treatments. The parameters significantly (P < 0.05, Kruskal–Wallis) affecting debris removal from the groove were fibre tip position, pulse length, pulse energy, irradiation time and frequency. Fibre tip shape and diameter had no significant influence on the cleaning efficacy.
Literatur
1.
Zurück zum Zitat Paque F, Boessler C, Zehnder M (2011) Accumulated hard tissue debris levels in mesial roots of mandibular molars after sequential irrigation steps. Int Endod J 44:148–153CrossRefPubMed Paque F, Boessler C, Zehnder M (2011) Accumulated hard tissue debris levels in mesial roots of mandibular molars after sequential irrigation steps. Int Endod J 44:148–153CrossRefPubMed
2.
Zurück zum Zitat Boutsioukis C, Lambrianidis T, Kastrinakis E (2009) Irrigant flow within a prepared root canal using various flow rates: a computational fluid dynamics study. Int Endod J 42:144–155CrossRefPubMed Boutsioukis C, Lambrianidis T, Kastrinakis E (2009) Irrigant flow within a prepared root canal using various flow rates: a computational fluid dynamics study. Int Endod J 42:144–155CrossRefPubMed
3.
Zurück zum Zitat Wu MK, Wesselink PR (2001) A primary observation on the preparation and obturation of oval canals. Int Endod J 34:137–141CrossRefPubMed Wu MK, Wesselink PR (2001) A primary observation on the preparation and obturation of oval canals. Int Endod J 34:137–141CrossRefPubMed
4.
Zurück zum Zitat Gu LS, Kim JR, Ling J, Choi KK, Pashley DH, Tay FR (2009) Review of contemporary irrigant agitation techniques and devices. J Endod 35:791–804CrossRefPubMed Gu LS, Kim JR, Ling J, Choi KK, Pashley DH, Tay FR (2009) Review of contemporary irrigant agitation techniques and devices. J Endod 35:791–804CrossRefPubMed
5.
Zurück zum Zitat de Groot SD, Verhaagen B, Versluis M, Wu MK, Wesselink PR, van der Sluis LW (2009) Laser-activated irrigation within root canals: cleaning efficacy and flow visualization. Int Endod J 42:1077–1083CrossRefPubMed de Groot SD, Verhaagen B, Versluis M, Wu MK, Wesselink PR, van der Sluis LW (2009) Laser-activated irrigation within root canals: cleaning efficacy and flow visualization. Int Endod J 42:1077–1083CrossRefPubMed
6.
Zurück zum Zitat Blanken J, Verdaasdonk R (2007) Cavitation as a working mechanism of the Er, Cr:YSGG laser in endodontics: a visualization study. J Oral Laser Appl 7:97–106 Blanken J, Verdaasdonk R (2007) Cavitation as a working mechanism of the Er, Cr:YSGG laser in endodontics: a visualization study. J Oral Laser Appl 7:97–106
7.
Zurück zum Zitat Blanken J, De Moor RJ, Meire M, Verdaasdonk R (2009) Laser induced explosive vapor and cavitation resulting in effective irrigation of the root canal. Part 1: a visualization study. Lasers Surg Med 41:514–519CrossRefPubMed Blanken J, De Moor RJ, Meire M, Verdaasdonk R (2009) Laser induced explosive vapor and cavitation resulting in effective irrigation of the root canal. Part 1: a visualization study. Lasers Surg Med 41:514–519CrossRefPubMed
8.
Zurück zum Zitat Matsumoto H, Yoshimine Y, Akamine A (2011) Visualization of irrigant flow and cavitation induced by Er:YAG laser within a root canal model. J Endod 37:839–843CrossRefPubMed Matsumoto H, Yoshimine Y, Akamine A (2011) Visualization of irrigant flow and cavitation induced by Er:YAG laser within a root canal model. J Endod 37:839–843CrossRefPubMed
9.
Zurück zum Zitat Esenaliev RO, Oraevsky AA, Letokhov VS, Karabutov AA, Malinsky TV (1993) Studies of acoustical and shock waves in the pulsed laser ablation of biotissue. Lasers Surg Med 13:470–484CrossRefPubMed Esenaliev RO, Oraevsky AA, Letokhov VS, Karabutov AA, Malinsky TV (1993) Studies of acoustical and shock waves in the pulsed laser ablation of biotissue. Lasers Surg Med 13:470–484CrossRefPubMed
10.
Zurück zum Zitat De Moor RJ, Blanken J, Meire M, Verdaasdonk R (2009) Laser induced explosive vapor and cavitation resulting in effective irrigation of the root canal. Part 2: evaluation of the efficacy. Lasers Surg Med 41:520–523CrossRefPubMed De Moor RJ, Blanken J, Meire M, Verdaasdonk R (2009) Laser induced explosive vapor and cavitation resulting in effective irrigation of the root canal. Part 2: evaluation of the efficacy. Lasers Surg Med 41:520–523CrossRefPubMed
11.
Zurück zum Zitat De Moor RJ, Meire M, Goharkhay K, Moritz A, Vanobbergen J (2010) Efficacy of ultrasonic versus laser-activated irrigation to remove artificially placed dentin debris plugs. J Endod 36:1580–1583CrossRefPubMed De Moor RJ, Meire M, Goharkhay K, Moritz A, Vanobbergen J (2010) Efficacy of ultrasonic versus laser-activated irrigation to remove artificially placed dentin debris plugs. J Endod 36:1580–1583CrossRefPubMed
12.
Zurück zum Zitat Deleu E, Meire MA, De Moor RJ (2015) Efficacy of laser-based irrigant activation methods in removing debris from simulated root canal irregularities. Lasers Med Sci 30:831–835CrossRefPubMed Deleu E, Meire MA, De Moor RJ (2015) Efficacy of laser-based irrigant activation methods in removing debris from simulated root canal irregularities. Lasers Med Sci 30:831–835CrossRefPubMed
13.
Zurück zum Zitat Lloyd A, Uhles JP, Clement DJ, Garcia-Godoy F (2014) Elimination of intracanal tissue and debris through a novel laser-activated system assessed using high-resolution micro-computed tomography: a pilot study. J Endod 40:584–587CrossRefPubMed Lloyd A, Uhles JP, Clement DJ, Garcia-Godoy F (2014) Elimination of intracanal tissue and debris through a novel laser-activated system assessed using high-resolution micro-computed tomography: a pilot study. J Endod 40:584–587CrossRefPubMed
14.
Zurück zum Zitat Divito E, Peters OA, Olivi G (2012) Effectiveness of the erbium:YAG laser and new design radial and stripped tips in removing the smear layer after root canal instrumentation. Lasers Med Sci 27:273–280CrossRefPubMed Divito E, Peters OA, Olivi G (2012) Effectiveness of the erbium:YAG laser and new design radial and stripped tips in removing the smear layer after root canal instrumentation. Lasers Med Sci 27:273–280CrossRefPubMed
15.
Zurück zum Zitat George R, Meyers IA, Walsh LJ (2008) Laser activation of endodontic irrigants with improved conical laser fiber tips for removing smear layer in the apical third of the root canal. J Endod 34:1524–1527CrossRefPubMed George R, Meyers IA, Walsh LJ (2008) Laser activation of endodontic irrigants with improved conical laser fiber tips for removing smear layer in the apical third of the root canal. J Endod 34:1524–1527CrossRefPubMed
16.
Zurück zum Zitat Peeters HH, Suardita K (2011) Efficacy of smear layer removal at the root tip by using ethylenediaminetetraacetic acid and erbium, chromium: yttrium, scandium, gallium garnet laser. J Endod 37:1585–1589CrossRefPubMed Peeters HH, Suardita K (2011) Efficacy of smear layer removal at the root tip by using ethylenediaminetetraacetic acid and erbium, chromium: yttrium, scandium, gallium garnet laser. J Endod 37:1585–1589CrossRefPubMed
17.
Zurück zum Zitat Guidotti R, Merigo E, Fornaini C, Rocca JP, Medioni E, Vescovi P (2014) Er:YAG 2,940-nm laser fiber in endodontic treatment: a help in removing smear layer. Lasers Med Sci 29:69–75CrossRefPubMed Guidotti R, Merigo E, Fornaini C, Rocca JP, Medioni E, Vescovi P (2014) Er:YAG 2,940-nm laser fiber in endodontic treatment: a help in removing smear layer. Lasers Med Sci 29:69–75CrossRefPubMed
18.
Zurück zum Zitat Peters OA, Bardsley S, Fong J, Pandher G, Divito E (2011) Disinfection of root canals with photon-initiated photoacoustic streaming. J Endod 37:1008–1012CrossRefPubMed Peters OA, Bardsley S, Fong J, Pandher G, Divito E (2011) Disinfection of root canals with photon-initiated photoacoustic streaming. J Endod 37:1008–1012CrossRefPubMed
19.
Zurück zum Zitat Ordinola-Zapata R, Bramante CM, Aprecio RM, Handysides R, Jaramillo DE (2014) Biofilm removal by 6% sodium hypochlorite activated by different irrigation techniques. Int Endod J 47:659–666CrossRefPubMed Ordinola-Zapata R, Bramante CM, Aprecio RM, Handysides R, Jaramillo DE (2014) Biofilm removal by 6% sodium hypochlorite activated by different irrigation techniques. Int Endod J 47:659–666CrossRefPubMed
20.
Zurück zum Zitat Pedulla E, Genovese C, Campagna E, Tempera G, Rapisarda E (2012) Decontamination efficacy of photon-initiated photoacoustic streaming (PIPS) of irrigants using low-energy laser settings: an ex vivo study. Int Endod J 45:865–870CrossRefPubMed Pedulla E, Genovese C, Campagna E, Tempera G, Rapisarda E (2012) Decontamination efficacy of photon-initiated photoacoustic streaming (PIPS) of irrigants using low-energy laser settings: an ex vivo study. Int Endod J 45:865–870CrossRefPubMed
21.
Zurück zum Zitat Lin CP, Stern D, Puliafito CA (1990) High-speed photography of Er: YAG laser ablation in fluid. Implication for laser vitreous surgery. Invest Ophthalmol Vis Sci 31:2546–2550PubMed Lin CP, Stern D, Puliafito CA (1990) High-speed photography of Er: YAG laser ablation in fluid. Implication for laser vitreous surgery. Invest Ophthalmol Vis Sci 31:2546–2550PubMed
22.
Zurück zum Zitat Mrochen M, Riedel P, Donitzky C, Seiler T (2001) Erbium: yttrium-aluminum-garnet laser induced vapor bubbles as a function of the quartz fiber tip geometry. J Biomed Opt 6:344–350CrossRefPubMed Mrochen M, Riedel P, Donitzky C, Seiler T (2001) Erbium: yttrium-aluminum-garnet laser induced vapor bubbles as a function of the quartz fiber tip geometry. J Biomed Opt 6:344–350CrossRefPubMed
23.
Zurück zum Zitat Gregorcic P, Jezersek M, Mozina J (2012) Optodynamic energy-conversion efficiency during an Er:YAG-laser-pulse delivery into a liquid through different fiber-tip geometries. J Biomed Opt 17:075006CrossRefPubMed Gregorcic P, Jezersek M, Mozina J (2012) Optodynamic energy-conversion efficiency during an Er:YAG-laser-pulse delivery into a liquid through different fiber-tip geometries. J Biomed Opt 17:075006CrossRefPubMed
24.
Zurück zum Zitat George R, Walsh LJ (2008) Apical extrusion of root canal irrigants when using Er:YAG and Er, Cr:YSGG lasers with optical fibers: an in vitro dye study. J Endod 34:706–708CrossRefPubMed George R, Walsh LJ (2008) Apical extrusion of root canal irrigants when using Er:YAG and Er, Cr:YSGG lasers with optical fibers: an in vitro dye study. J Endod 34:706–708CrossRefPubMed
25.
Zurück zum Zitat Arslan H, Akcay M, Ertas H, Capar ID, Saygili G, Mese M (2014) Effect of PIPS technique at different power settings on irrigating solution extrusion. Lasers Med Sci 30:1641–1645CrossRefPubMed Arslan H, Akcay M, Ertas H, Capar ID, Saygili G, Mese M (2014) Effect of PIPS technique at different power settings on irrigating solution extrusion. Lasers Med Sci 30:1641–1645CrossRefPubMed
26.
Zurück zum Zitat Meire MA, Poelman D, De Moor RJ (2014) Optical properties of root canal irrigants in the 300–3,000-nm wavelength region. Lasers Med Sci 29:1557–1562CrossRefPubMed Meire MA, Poelman D, De Moor RJ (2014) Optical properties of root canal irrigants in the 300–3,000-nm wavelength region. Lasers Med Sci 29:1557–1562CrossRefPubMed
27.
Zurück zum Zitat Jiang LM, Verhaagen B, Versluis M, van der Sluis LW (2010) Evaluation of a sonic device designed to activate irrigant in the root canal. J Endod 36:143–146CrossRefPubMed Jiang LM, Verhaagen B, Versluis M, van der Sluis LW (2010) Evaluation of a sonic device designed to activate irrigant in the root canal. J Endod 36:143–146CrossRefPubMed
Metadaten
Titel
Influence of lasing parameters on the cleaning efficacy of laser-activated irrigation with pulsed erbium lasers
verfasst von
Maarten A. Meire
Sophie Havelaerts
Roeland J. De Moor
Publikationsdatum
09.02.2016
Verlag
Springer London
Erschienen in
Lasers in Medical Science / Ausgabe 4/2016
Print ISSN: 0268-8921
Elektronische ISSN: 1435-604X
DOI
https://doi.org/10.1007/s10103-016-1892-0

Weitere Artikel der Ausgabe 4/2016

Lasers in Medical Science 4/2016 Zur Ausgabe