Moharam LM, Sadony DM, Nagi SM. Evaluation of diode laser application on
chemical analysis and surface microhardness of white spots enamel lesions with
two remineralizing agents. J Clin Exp Dent. 2020;12(3):e271-6.
doi:10.4317/jced.56490
https://doi.org/10.4317/jced.56490
____________________________________________________
References
1.
Ten CM. Fluorides in caries prevention and control: empiricism or science.
Caries Res. 2004;38:254-7. |
|
|
|
2.
Castellan CS, Luiz AC, Bezinelli LM, Lopes RMG, Mendes FM, Eduardo CDP, et
al. In vitro evaluation of enamel demineralization after Er: YAG and Nd: YAG
laser irradiation on primary teeth. Photom Laser Surg. 2007;25:85-90. |
|
|
|
3.
Chen CC, Huang ST. The effects of lasers and fluoride on the acid resistance
of decalcified human enamel. Photom Laser Surg. 2009;27:447-52. |
|
|
|
4.
Gonzalez-Rodriguez A, de Dios LGJ, del Castillo JD, Villalba-Moreno J.
Comparison of effects of diode laser and CO2 laser on human teeth and their
usefulness in topical fluoridation. Lasers med sci. 2011;26:317-24. |
|
|
|
5.
Klim JD, Fox DB, Coluzzi DJ, Neckel CP, Swick MD. The diode laser in dentistry.
Wavelengths. 2000;8:13-6. |
|
|
|
6.
Hirota F, Furumoto K. A hypothesis for acquired acid resistance afforded by
the laser irradiation. Int Congr Ser. 2003;1248:307-11. |
|
|
|
7.
Villalba-Moreno J, González-Rodríguez A, López-González JD, Bolaños-Carmona
MV, Pedraza-Muriel V. Increased fluoride uptake in human dental specimens
treated with diode laser. Lasers Med Sci. 2007;22:137-42. |
|
|
|
8.
Santaella MR, Braun A, Matson E, Frentzen M. Effect of diode laser and
fluoride varnish on initial surface demineralization of primary dentition
enamel: an in vitro study. Int J Paediatr Dent. 2004;14:199-203. |
|
|
|
9.
Vitale MC, Zaffe D, Botticell AR, Caprioglio C. Diode laser irradiation and
fluoride uptake in human teeth. Eur Arch Paediatr Dent. 2011;12:90-2. |
|
|
|
10.
Al-Shaker SM, Nayif MM, Al-Sabawi NA. Microhardness of Artificially
Demineralized Enamel treated with Different Regimes of ACP-CPP and Fluoride
Agents. Int J Enhan Res Sci Tech Eng. 2014;3:102-7. |
|
|
|
11.
Bayrak S, Tun ES, Aksoy A, Ertas E, Guvenc D, Ozer S. Fluoride release and
recharge from different materials used as fissure sealants. Eur J Dent.
2010;4:245-50. |
|
|
|
12.
Pavithra R, Sugavanesh P, Lalithambigai G, Arunkulandaivelu1 T, Madan Kumar
P. Comparison of microhardness and micromorphology of enamel following a
fissurotomy procedure using three different laser systems: An in vitro study.
J Dent Lasers. 2016;1:10-5. |
|
|
|
13.
Yussif NM, Saafan MA, Mehani SS. Impact of welding the dental enamel walls of
the fissure system using semiconductor laser: In-Vitro study. Dentistry.
2017;7:1-5. |
|
|
|
14.
Awooda EM, Almuslet NA. Evaluation of the effectiveness of low power diode
laser with different wavelengths in dental caries prevention. J Dent Lasers.
2015;9:89-93. |
|
|
|
15.
Bahrololoomi Z, Fotuhi Ardakani F, Sorouri M. In Vitro Comparison of the
Effects of Diode Laser and CO2 Laser on Topical Fluoride Uptake in Primary Teeth.
J Dent (Tehran). 2015;12:585-91. PMid:
27123018 PMCid: PMC4847164 |
|
|
|
16.
Chuenarrom C, Benjakul P, Daosodsai P. Effect of Indentation Load and Time on
Knoop and Vickers Microhardness Tests for Enamel and Dentin. Mat Res. 2009;12:473-6. |
|
|
|
17.
Slujáiev IF, Pak AN. He-Ne laser effect on dental enamel solubility in health
and caries. Stomatology. 1990;5:6-9. |
|
|
|
18.
de Sant'anna GR, dos Santos EA, Soares LE, do Espírito Santo AM, Martin AA,
Duarte DA, et al. Dental enamel irradiated with infrared diode laser and
photoabsorbing cream: Part 1- FT-Raman Study. Photom Laser Surg. 2009;27:499-507. |
|
|
|
19.
Putt MS, Beltz JF, Muhler JC. Effect of temperature of SnF solution on tin
and fluoride uptake by bovine enamel. J Dent res. 1978;57:772-6. |
|
|
|
20.
Oho T, Morioka T. A possible mechanism of acquired acid resistance of human
dental enamel by laser irradiation. Caries res. 1990;24:86-92. |
|
|
|
21.
Simmer JP, Fincham AG. Molecular mechanisms of dental enamel formation.
Critical Rev Oral Biolog Med. 1995;6:84-108. |
|
|
|
22.
Antunes A, Vianna SS, Gomes ASL, De Rossi W, Zezell DM. Surface morphology,
elemental distribution, and spectroscopic changes subsequent the application
of nanosecond pulsed Nd: YAG laser on dental enamel surface. Laser Phys Lett.
2005;2:141-7. |
|
|
|
23.
Ambarkova V, Goršeta K, Jankolovska M, Glavina D, Škrinjarić I. Effect of the
fluoride gels and varnishes comparing to CPP-ACP complex on human enamel
demineralization/remineralization. Acta stomat Croat. 2013;47:99-110. |
|
|
|
24.
Westerman GH, Hicks MJ, Flaitz CM, Blankenau RJ, Powell GL. Combined effects
of acidulated phosphate fluoride and argon laser on sound root surface
morphology: an in vitro scanning electron microscopy study. J Clin Laser Med
Surg. 1999;17:63-8. |
|
|
|
25.
Aminzadeh A, Shahabi S, Walsh LJ. Raman spectroscopic studies of CO2
laser-irradiated human dental enamel. Spectrochim Acta Part A: Mol Biomol
Spectro. 1999;55:1303-8. |
|
|
|
26.
Meurman JH, Hemmerlé J, Voegel JC, Rauhamaa-Mäkinen R, Luomanen M.
Transformation of hydroxyapatite to fluorapatite by irradiation with
high-energy CO2 laser. Caries Res. 1997;31:397-400. |
|
|
|
27.
Vlacic J, Meyers IA, Kim J, Walsh LJ. Laser-activated fluoride treatment of
enamel against an artificial caries challenge: comparison of five wavelengths.
Aust Dent J. 2007;52:101-5. |
|
|
|
28.
Fox JL, Yu D, Otsuka M, Higuchi WI, Wong J, Powell G. Combined effects of
laser irradiation and chemical inhibitors on the dissolution of dental
enamel. Caries Res. 1992;26:333-9. |
|
|
|
29.
Nammour S1, Rocca JP, Pireaux JJ, Powell GL, Morciaux Y, Demortier G.
Increase of enamel fluoride retention by low fluence argon laser beam: A
6-month follow-up study in vivo. Lasers Surg Med. 2005;36:220-4. |