• Laser & Optoelectronics Progress
  • Vol. 49, Issue 10, 100005 (2012)
Zhan Zhenlin*, Zhang Xianzeng, Guo Wenqing, Liu Haishan, and Xie Shusen
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  • [in Chinese]
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    DOI: 10.3788/lop49.100005 Cite this Article Set citation alerts
    Zhan Zhenlin, Zhang Xianzeng, Guo Wenqing, Liu Haishan, Xie Shusen. Advances in Ablation Optics of Hard Dental Tissue[J]. Laser & Optoelectronics Progress, 2012, 49(10): 100005 Copy Citation Text show less
    References

    [1] G. L. Lecarpentier, M. Motamedi, L. P. McMath et al.. Continuous wave laser ablation of tissue: analysis of thermal and mechanical events[J]. IEEE Trans. Biomed. Eng., 1993, 40(2): 188~200

    [2] A. Vogel, V. Venugopalan. Mechanisms of pulsed laser ablation of biological tissues[J]. Chem. Rev., 2003, 103(2): 577~644

    [3] R. H. Stern, R. F. Sognnaes. Laser beam effect on hard dental tissues[J]. J. Dent. Res., 1964, 43(5sp): 873

    [4] S. Parker. Introduction, history of lasers and laser light production[J]. British Dental Journal, 2007, 202(1): 21~31

    [5] J. D. B. Featherstone, D. Fried. Fundamental interactions of lasers with dental hard tissues[J]. Medical Laser Application, 2001, 16(3): 181~194

    [6] H. A. Wigdor, J. J. Walsh, J. D. Featherstone et al.. Lasers in dentistry[J]. Lasers Surg. Med., 1995, 16(2): 103~133

    [7] L. Goldman, J. A. Gray, J. Goldman et al.. Effect of laser beam impacts on teeth[J]. J. Am. Dent. Ass., 1965, 70(3): 601~606

    [8] T. E. Gordon. Single-surface cutting of normal tooth with ruby laser[J]. J. Am. Dent. Ass., 1967, 74(3): 398~402

    [9] R. H. Stern, J. Vahl, R. F. Sognnaes. Lased enamol: ultrastructural observations of pulsed carbon dioxide laser effect[J]. J. Dent. Res., 1972, 51(2): 455~460

    [10] S. Parker. Surgical lasers and hard dental tissue[J]. British Dental Journal, 2007, 202(8): 445~454

    [11] R. Hibst, U. Keller. Experimental studies of the application of the Er:YAG laser on dental hard substances. I. Measurement of the ablation rate[J]. Lasers Surg. Med., 1989, 9(4): 338~344

    [12] U. Keller, R. Hibst. Experimental studies of the application of the Er:YAG laser on dental hard substances. II. Light microscopic and SEM investigations[J]. Lasers Surg. Med., 1989, 9(4): 345~351

    [13] S. Parker. Laser-tissue interaction[J]. British Dental Journal, 2007, 202(2): 73~81

    [14] P. Rechmann. Dental laser research: selective ablation of caries, calculus, and microbial plaque, from the idea to the first in vivo investigation[J]. Dent. Clin. North Am., 2004, 48(4): 1077~1104

    [15] B. Majaron, M. Lukac. Thermomechanical laser ablation of hard dental tissues: an overview of effects, regimes, and models[C]. SPIE, 1999, 3593: 184~195

    [16] P. Ekworapoj, S. K. Sidhu, J. F. Mccabe. Effect of different power parameters of Er, CrYSGG laser on human dentine[J]. Lasers Med. Sci., 2007, 22(3): 175~182

    [17] J. A. Izatt, D. Albagli, M. Britton et al.. Wavelength dependence of pulsed laser ablation of calcified tissue[J]. Lasers Surg. Med., 1991, 11(3): 238~249

    [18] Zhang Xianzeng, Xie Shusen, Zhan Zhenlin et al.. Advances in hard biotissue ablation with pulse infrared lasers[J]. Laser & Optoelectronics Progress, 2009, 46(12): 72~79

    [19] N. Rizcalla, C. Bader, T. Bortolotto et al.. Improving the efficiency of an Er:YAG laser on enamel and dentin[J]. Quintessence Int., 2012, 43(2): 153~160

    [20] A. K. Murray, M. R. Dickinson. Tissue ablation-rate measurements with a long-pulsed, fibre-deliverable 308 nm excimer laser[J]. Lasers Med. Sci., 2004, 19(3): 127~138

    [21] C. Apel, J. Meister, R. S. Ioana et al.. The ablation threshold of Er:YAG and ErYSGG laser radiation in dental enamel[J]. Lasers Med. Sci., 2002, 17(4): 246~252

    [22] H. W. Kang, I. Rizoiu, A. J. Welch. Hard tissue ablation with a spray-assisted mid-IR laser[J]. Phys. Med. Biol., 2007, 52(24): 7243~7259

    [23] G. Nicolodelli, Z. L. R. de Fatima, B. V. Salvador. Influence of effective number of pulses on the morphological structure of teeth and bovine femur after femtosecond laser ablation[J]. J. Biomed. Opt., 2012, 17(4): 048001

    [24] M. S. Bello-Silva, M. Wehner, E. C. de Paula et al.. Precise ablation of dental hard tissues with ultra-short pulsed lasers. Preliminary exploratory investigation on adequate laser parameters[J]. Lasers Med. Sci., 2012, DOI: 10.1007/s10103-012-1107-2

    [25] L. Ji, L. Li, H. Devlin et al.. Tisapphire femtosecond laser ablation of dental enamel, dentine, and cementum[J]. Lasers Med. Sci., 2012, 27(1): 197~204

    [26] F. F. Rego, M. Dutra-Correa, G. Nicolodelli et al.. Influence of the hydration state on the ultrashort laser ablation of dental hard tissues[J]. Lasers Med. Sci., 2012, DOI: 10.1007/S10103-012-1118-z

    [27] D. M. Harris, J. M. White, H. Goodis et al.. Selective ablation of surface enamel caries with a pulsed NdYAG dental laser[J]. Lasers Surg. Med., 2002, 30(5): 342~350

    [28] Z. Zhan, Q. Peng, X. Zhang et al.. Effect of different power parameters of Er, CrYSGG laser on dentin ablation ability and substrate morphology[C]. International Symposium on Photonics and Optoelectronics, 2009. 959~962

    [29] Z. Zhan, Q. Peng, X. Zhang et al.. Ablation of Human Dentin with Er:YAG Laser[C]. 8th Pacific Rim Conference on Lasers and Electro-Optics, 2009. 1137~1138

    [30] C. B. Brandao, M. M. Contente, F. A. De Lima et al.. Thermal alteration and morphological changes of sound and demineralized primary dentin after Er:YAG laser ablation[J]. Microsc. Res. Tech., 2012, 75(2): 126~132

    [31] D. Fried, J. D. Featherstone, C. Q. Le et al.. Dissolution studies of bovine dental enamel surfaces modified by high-speed scanning ablation with a λ=9.3 μm TEA CO2 laser[J]. Lasers Surg. Med., 2006, 38(9): 837~845

    [32] C. Q. Le, D. Fried, J. D. B. Featherstone. Lack of dentin acid resistance following 9.3 μm CO2 laser irradiation[C]. SPIE, 2008, 6843: 68430J

    [33] C. Steiner-Oliveira, M. Nobre-Dos-Santos, D. T. Zero et al.. Effect of a pulsed CO2 laser and fluoride on the prevention of enamel and dentine erosion[J]. Arch. Oral. Biol., 2010, 55(2): 127~133

    [34] A. Obeidi, M. S. Mccracken, P. R. Liu et al.. Enhancement of bonding to enamel and dentin prepared by Er, CrYSGG laser[J]. Lasers Surg. Med., 2009, 41(6): 454~462

    [35] K. K. Sheth, M. Staninec, A. V. Sarma et al.. Selective targeting of protein, water, and mineral in dentin using UV and IR pulse lasers: the effect on the bond strength to composite restorative materials[J]. Lasers Surg. Med., 2004, 35(4): 245~253

    [36] D. Nguyen, K. Chang, S. Hedayatollahnajafi et al.. High-speed scanning ablation of dental hard tissues with a λ=9.3 μm CO2 laser: adhesion, mechanical strength, heat accumulation, and peripheral thermal damage[J]. J. Biomed. Opt., 2011, 16(7): 071410

    [37] L. Ceballos, M. Toledano, R. Osorio et al.. Bonding to Er-YAG-laser-treated dentin[J]. J. Dent. Res., 2002, 81(2): 119~122

    [38] R. P. Ramos, D. T. Chimello, M. A. Chinelatti et al.. Effect of Er:YAG laser on bond strength to dentin of a self-etching primer and two single-bottle adhesive systems[J]. Lasers Surg. Med., 2002, 31(3): 164~170

    [39] M. T. Schein, J. S. Bocangel, G. E. Nogueira et al.. SEM evaluation of the interaction pattern between dentin and resin after cavity preparation using Er:YAG laser[J]. J. Dent., 2003, 31(2): 127~135

    [40] M. T. de Oliveira, C. A. G. Arrais, A. C. Aranha et al.. Micromorphology of resin-dentin interfaces using one-bottle etch & rinse and self-etching adhesive systems on laser-treated dentin surfaces: a confocal laser scanning microscope analysis[J]. Lasers Surg. Med., 2010, 42(7): 662~670

    [41] P. C. Ghiggi, A. R. Dall, L. H. Jr. Burnett et al.. Effect of the NdYAG and the Er:YAG laser on the adhesive-dentin interface: a scanning electron microscopy study[J]. Photomed. Laser Surg., 2010, 28(2): 195~200

    [42] Y. Wang, X. Yao. Morphological/chemical imaging of demineralized dentin layer in its natural, wet state[J]. Dent. Mater., 2010, 26(5): 433~442

    [43] Y. Wang, P. Spencer, M. P. Walker. Chemical profile of adhesive/caries-affected dentin interfaces using Raman microspectroscopy[J]. J. Biomed. Materi. Res. A., 2007, 81(2): 279~286

    [44] T. A. Bakhsh, A. Sadr, Y. Shimada et al.. Non-invasive quantification of resin-dentin interfacial gaps using optical coherence tomography: validation against confocal microscopy[J]. Dent. Mater., 2011, 27(9): 915~925

    [45] G. M. Peavy, L. Reinisch, J. T. Payne et al.. Comparison of cortical bone ablations by using infrared laser wavelengths 2.9 to 9.2 μm[J]. Lasers Surg. Med., 1999, 26(5): 421~434

    [46] N. M. Fried, D. Fried. Comparison of Er:YAG and 9.6-microm TE CO2 lasers for ablation of skull tissue[J]. Lasers Surg. Med., 2001, 28(4): 335~343

    [47] K. M. Sasaki, A. Aoki, S. Ichinose et al.. Ultrastructural analysis of bone tissue irradiated by Er:YAG Laser[J]. Lasers Surg. Med., 2002, 31(5): 322~332

    [48] Zhang Xianzeng, Wang Xiaoyan, Zhan Zhenlin et al.. Comparison of skull tissue ablation with pulse CO2 and Er:YAG lasers[J]. Chinese J. Lasers, 2009, 36(10): 2577~2581

    [49] J. E. Schoenly, W. D. Seka, P. Rechmann. Near-ultraviolet removal rates for subgingival dental calculus at different irradiation angles[J]. J. Biomed. Opt., 2011, 16(7): 071404

    [50] J. Meister, R. Franzen, K. Forner et al.. Influence of the water content in dental enamel and dentin on ablation with erbium YAG and erbium YSGG lasers[J]. J. Biomed. Opt., 2006, 11(3): 034030

    [51] Zhao Haibin, Zhang Xianzeng, Zhan Zhenlin et al.. Influence of an applied water film on bone hard tissue ablation with pulsed CO2 laser[J]. Chinese J. Lasers, 2011, 38(1): 0104002

    [52] Zhang Xianzeng, Guo Jian, Zhan Zhenlin et al.. Water spray-assisted ablation of bone hard tissue with pulsed CO2 laser[J]. Acta Optica Sinica, 2010, 30(7): 2069~2073

    [53] A. Da Fonseca Alvarez, C. Moura-Netto, D. A. Frugoli et al.. Temperature changes on the root surfaces of mandibular incisors after an 810-nm high-intensity intracanal diode laser irradiation[J]. J. Biomed. Opt., 2012, 17(1): 015006

    Zhan Zhenlin, Zhang Xianzeng, Guo Wenqing, Liu Haishan, Xie Shusen. Advances in Ablation Optics of Hard Dental Tissue[J]. Laser & Optoelectronics Progress, 2012, 49(10): 100005
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