Generic placeholder image

Current Dentistry

Editor-in-Chief

ISSN (Print): 2542-579X
ISSN (Online): 2542-5803

Research Article

Correlation Among Methods to Measure Tooth Color in Clinical Trials Evaluating Tooth Bleaching

Author(s): André Luis Faria-e-Silva*

Volume 1, Issue 1, 2019

Page: [46 - 52] Pages: 7

DOI: 10.2174/2542579X01666180416112018

Abstract

Objective: This study aimed to assess possible differences in results provided by two shade guides and a spectrophotometer used to measure the color changes during tooth bleaching.

Methods: Fifty-six patients underwent two sessions of in-office tooth bleaching with a 35% hydrogen peroxide with a week of an interval between them. The color evaluation was performed using shade match with two guide scales (Vita Classical, and Vita Bleach Guide) and a spectrophotometer providing CieLab data. The color was assessed at baseline and 7 days after each session, and 30 days after the last session. Data from scales were arranged in scores according to lightness (lowest to highest) and the color changes were calculated based on baseline data. For CieLab data, ΔL, Δa, Δb, and ΔE were calculated for each assessment time. Differences between the color changes observed in each session were assessed by Wilcoxon test (α = 0.05). Friedman`s test and One-way repeated measures ANOVA were used to analyze color changes among the assessment times. Spearman`s test was used to evaluate the correlation between the shade guide scores and data from Cielab.

Results: All methods of color measurement demonstrated any additional effect of second bleaching session on color change, and stable color after 30 days (p < 0.001 for all methods). Both shade guide scales presented low correlation coefficients with ΔL, and moderate coefficients with Δb, Δa, and ΔE.

Conclusion: Despite the weak/ moderate correlation among the methods used to measure tooth color, all methods showed similar results of tooth bleaching effectiveness.

Keywords: Accuracy, clinical trial, color measurement, hydrogen peroxide, tooth bleaching, spectrophotometry.

Graphical Abstract

[1]
Thosre D, Mulay S. Smile enhancement the conservative way: Tooth whitening procedures. J Conserv Dent 2009; 12(4): 164-8.
[2]
Pontes DG, Correa KM, Cohen-Carneiro F. Re-establishing esthetics of fluorosis-stained teeth using enamel microabrasion and dental bleaching techniques. Eur J Esthet Dent 2012; 7(2): 130-7.
[3]
Lise DP, Gutiérrez C, da Rosa TP, Vieira LC. Bleaching options for pulp-calcified teeth: case history reports. Oper Dent 2014; 39(6): 572-7.
[4]
Sibilla P, Cogo E, Turrini R, Calura G, Fradeani M. The timing and operational management of the variables of bleaching in cases of rehabilitation in the esthetic field. Int J Esthet Dent 2014; 9(3): 436-45.
[5]
Kwon SR, Wertz PW. Review of the mechanism of tooth whitening. J Esthet Restor Dent 2015; 27(5): 240-57.
[6]
Majeed A, Farooq I, Grobler SR, Rossouw RJ. Tooth-bleaching: a review of the efficacy and adverse effects of various tooth whitening products. J Coll Physicians Surg Pak 2015; 25(12): 891-6.
[7]
Joiner A, Luo W. Tooth colour and whiteness: a review. J Dent 2017; 67S: S3-S10.
[8]
Demarco FF, Conde MC, Ely C, et al. Preferences on vital and nonvital tooth bleaching: a survey among dentists from a city of southern Brazil. Braz Dent J 2013; 24(5): 527-31.
[9]
Radz GM. Effectiveness of a combined in-office and take-home whitening system for teeth shades A3.5 to A4. Compend Contin Educ Dent 2014; 35(9): 696-700.
[10]
Li Y, Greenwall L. Safety issues of tooth whitening using peroxide-based materials. Br Dent J 2013; 215(1): 29-34.
[11]
de Geus JL, Wambier LM, Kossatz S, Loguercio AD, Reis A. At-home vs in-office bleaching: A systematic review and meta-analysis. Oper Dent 2016; 41(4): 341-56.
[12]
Machado LS, Anchieta RB, dos Santos PH, et al. Clinical comparison of at-home and in-office dental bleaching procedures: A randomized trial of a split-mouth design. Int J Periodontics Restorative Dent 2016; 36(2): 251-60.
[13]
Capehart K. Treating tetracycline staining in the adult dentition: a case report. Gen Dent 2008; 56(3): 286-9.
[14]
Tsubura S. Clinical evaluation of three months’ nightguard vital bleaching on tetracycline-stained teeth using Polanight 10% carbamide gel: 2-year follow-up study. Odontology 2010; 98(2): 134-8.
[15]
Kugel G, Gerlach RW, Aboushala A, Ferreira S, Magnuson B. Long-term use of 6.5% hydrogen peroxide bleaching strips on tetracycline stain: A clinical study. Compend Contin Educ Dent 2011; 32(8): 50-6.
[16]
Kirchhoff AL, Raldi DP, Salles AC, Cunha RS, Mello I. Tooth discolouration and internal bleaching after the use of triple antibiotic paste. Int Endod J 2015; 48(12): 1181-7.
[17]
Kahler B, Rossi-Fedele G. A review of tooth discoloration after regenerative endodontic therapy. J Endod 2016; 42(4): 563-9.
[18]
Todd M, Brackett W, Romero M. Correction of a single discolored anterior tooth due to internal resorption: a clinical report. Compend Contin Educ Dent 2017; 38(5): e13-6.
[19]
Santos LG, Felippe WT, Souza BD, Konrath AC, Cordeiro MM, Felippe MC. Crown discoloration promoted by materials used in regenerative endodontic procedures and effect of dental bleaching: spectrophotometric analysis. J Appl Oral Sci 2017; 25(2): 234-42.
[20]
Timmerman A, Parashos P. Bleaching of a discolored tooth with retrieval of remnants after successful regenerative endodontics. J Endod 2018; 44(1): 93-7.
[21]
Ontiveros JC, Paravina RD. Color change of vital teeth exposed to bleaching performed with and without supplementary light. J Dent 2009; 37(11): 840-7.
[22]
Da Costa J, Lubisich E, Ferracane J, Hilton T. Comparison of efficacy of an in-office whitening system used with and without a whitening priming agent. J Esthet Restor Dent 2011; 23(2): 97-104.
[23]
Ontiveros JC, Eldiwany MS, Paravina R. Clinical effectiveness and sensitivity with overnight use of 22% carbamide peroxide gel. J Dent 2012; 40(Suppl. 2): e17-24.
[24]
Santana MA, Nahsan FP, Oliveira AH, Loguércio AD, Faria-e-Silva AL. Randomized controlled trial of sealed in-office bleaching effectiveness. Braz Dent J 2014; 25(3): 207-11.
[25]
Kwon SR, Meharry M, Oyoyo U, Li Y. Efficacy of do-it-yourself whitening as compared to conventional tooth whitening modalities: an in vitro study. Oper Dent 2015; 40(1): E21-7.
[26]
Correa AC, Santana TR, Nahsan FP, Loguercio AD, Faria-E-Silva AL. The impact of a customized tray on in-office bleaching tooth sensitivity: A randomized clinical trial. Oper Dent 2016; 41(1): 15-22.
[27]
Fernandes MT, Vaez SC, Lima CM, Nahsan FP, Loguércio AD, Faria-E-Silva AL. Preemptive use of naproxen on tooth sensitivity caused by in-office bleaching: a triple-blind, crossover, randomized clinical trial. Oper Dent 2017; 42(5): 486-96.
[28]
Gonçalves MLL, Tavares ACDS, Mota ACCD, Penna LAP, Deana AM, Bussadori SK. In-office tooth bleaching for adolescents using hydrogen peroxide-based gels: clinical trial. Braz Dent J 2017; 28(6): 720-5.
[29]
Vildósola P, Vera F, Ramírez J, et al. Comparison of effectiveness and sensitivity using two in-office bleaching protocols for a 6% hydrogen peroxide gel in a randomized clinical trial. Oper Dent 2017; 42(3): 244-52.
[30]
Loguercio AD, Servat F, Stanislawczuk R, et al. Effect of acidity of in-office bleaching gels on tooth sensitivity and whitening: A two-center double-blind randomized clinical trial. Clin Oral Investig 2017; 21(9): 2811-8.
[31]
Coppla FM, Rezende M, de Paula E, et al. Combination of acetaminophen/codeine analgesics does not avoid bleaching-induced tooth sensitivity: A randomized, triple-blind two-center clinical trial. Oper Dent 2018; 43(2): E53-63.
[32]
Vaez SC, Faria-E-Silva AL, Loguércio AD, Fernandes MTG, Nahsan FPS. Preemptive use of etodolac on tooth sensitivity after in-office bleaching: A randomized clinical trial. J Appl Oral Sci 2018; 26: e20160473.
[33]
Paravina RD, Johnston WM, Powers JM. New shade guide for evaluation of tooth whitening-colorimetric study. J Esthet Restor Dent 2007; 19(5): 276-83.
[34]
Paravina RD. New shade guide for tooth whitening monitoring: visual assessment. J Prosthet Dent 2008; 99(3): 178-84.
[35]
Niaz MO, Naseem M, Elcock C. Ethnicity and perception of dental shade esthetics. Int J Esthet Dent 2015; 10(2): 286-98.
[36]
Dudea D, Gasparik C, Botos A, Alb F, Irimie A, Paravina RD. Influence of background/surrounding area on accuracy of visual color matching. Clin Oral Investig 2016; 20(6): 1167-73.
[37]
Ristic I, Stankovic S, Paravina RD. Influence of color education and training on shade matching skills. J Esthet Restor Dent 2016; 28(5): 287-94.
[38]
Clary JA, Ontiveros JC, Cron SG, Paravina RD. Influence of light source, polarization, education, and training on shade matching quality. J Prosthet Dent 2016; 116(1): 91-7.
[39]
Chu SJ, Trushkowsky RD, Paravina RD. Dental color matching instruments and systems. Review of clinical and research aspects. J Dent 2010; 38(Suppl. 2): e2-e16.
[40]
Sharma G, Wu W, Dalal EN. The CIEDE2000 color-difference formula: Implementation notes, supplementary test data, and mathematical observations. Color Res Appl 2005; 30: 21-30.
[41]
Luo W, Westland S, Ellwood R, Pretty I, Cheung V. Development of a whiteness index for dentistry. J Dent 2009; 37(Suppl. 1): e21-6.
[42]
Pérez MM, Ghinea R, Rivas MJ, et al. Development of a customized whiteness index for dentistry based on CIELAB color space. Dent Mater 2016; 32: 461-7.
[43]
Gómez-Polo C, Portillo Muñoz M, Lorenzo Luengo MC, et al. Comparison of the CIELab and CIEDE2000 color difference formulas. J Prosthet Dent 2016; 115: 65-70.
[44]
Hegedüs C, Bistey T, Flora-Nagy E, et al. An atomic force microscopy study on the effect of bleaching agents on enamel surface. J Dent 1999; 27(7): 509-15.
[45]
Kawamoto K, Tsujimoto Y. Effects of the hydroxyl radical and hydrogen peroxide on tooth bleaching. J Endod 2004; 30(1): 45-50.
[46]
Fattibene P, Carosi A, De Coste V, et al. A comparative EPR, infrared and Raman study of natural and deproteinated tooth enamel and dentin. Phys Med Biol 2005; 50(6): 1095-108.
[47]
Chng HK, Ramli HN, Yap AUJ, Lim CT. Effect of hydrogen peroxide on intertubular dentine. J Dent 2005; 33(5): 363-9.
[48]
Wang Y, Yao X. Morphological/chemical imaging of demineralized dentin layer in its natural, wet state. Dent Mater 2010; 26(5): 433-42.
[49]
Eimar H, Siciliano R, Abdallah MN, et al. Hydrogen peroxide whitens teeth by oxidizing the organic structure. J Dent 2012; 40(Suppl. 2): e25-33.
[50]
Sato C, Rodrigues FA, Garcia DM, et al. Tooth bleaching increases dentinal protease activity. J Dent Res 2013; 92(2): 187-92.
[51]
Bhutani N, Venigalla BS, Patil JP, Singh TV, Jyotsna SV, Jain A. Evaluation of bleaching efficacy of 37.5% hydrogen peroxide on human teeth using different modes of activations: An in vitro study. J Conserv Dent 2016; 19(3): 259-63.
[52]
Públio JD, D’Arce MB, Catelan A, et al. Influence of enamel thickness on bleaching efficacy: an in-depth color analysis. Open Dent J 2016; 10: 438-45.
[53]
Tao D, Smith RN, Zhang Q, et al. Tooth whitening evaluation of blue covarine containing toothpastes. J Dent 2017; 67S: S20-4.
[54]
Botelho MG, Chan AWK, Newsome PRH, McGrath CP, Lam WYH. A randomized controlled trial of home bleaching of tetracycline-stained teeth. J Dent 2017; 67: 29-35.
[55]
Perete-de-Freitas CE, Silva PD, Faria-E-Silva AL. Impact of microabrasion on the effectiveness of tooth bleaching. Braz Dent J 2017; 28(5): 612-7.
[56]
Shahabi S, Assadian H, Mahmoudi Nahavandi A, Nokhbatolfoghahaei H. Comparison of tooth color change after bleaching with conventional and different light-activated methods. J Lasers Med Sci 2018; 9(1): 27-31.
[57]
Menezes RP, Silva PD, Leal PC. Faria-E-Silva AL. Impact of 35% hydrogen peroxide on color and translucency changes in enamel and dentin. Braz Dent J 2018; 29(1): 88-92.
[58]
Della Bona A, Barrett AA, Rosa V, Pinzetta C. Visual and instrumental agreement in dental shade selection: three distinct observer populations and shade matching protocols. Dent Mater 2009; 25(2): 276-81.
[59]
Knezović D, Zlatarić D, Illeš IŽ, Alajbeg M. Žagar. In vivo and in vitro evaluations of repeatability and accuracy of vita easyshade® advance 4.0 dental shade-matching device. Acta Stomatol Croat 2015; 49(2): 112-8.
[60]
Nakhaei M, Ghanbarzadeh J, Amirinejad S, Alavi S, Rajatihaghi H. The influence of dental shade guides and experience on the accuracy of shade matching. J Contemp Dent Pract 2016; 17(1): 22-6.
[61]
Tsiliagkou A, Diamantopoulou S, Papazoglou E, Kakaboura A. Evaluation of reliability and validity of three dental color-matching devices. Int J Esthet Dent 2016; 11(1): 110-24.
[62]
Pecho OE, Pérez MM, Ghinea R, Della Bona A. Lightness, chroma and hue differences on visual shade matching. Dent Mater 2016; 32(11): 1362-73.
[63]
Pecho OE, Ghinea R, Perez MM, Della Bona A. Influence of gender on visual shade matching in dentistry. J Esthet Restor Dent 2017; 29(2): E15-23.
[64]
Cardoso PC, Reis A, Loguercio A, Vieira LC, Baratieri LN. Clinical effectiveness and tooth sensitivity associated with different bleaching times for a 10 percent carbamide peroxide gel. J Am Dent Assoc 2010; 141(10): 1213-20.
[65]
Oliveira GM, Miguez PA, Oliveira GB, et al. Safety and efficacy of a high-adhesion whitening strip under extended wear regimen. J Dent 2013; 41(Suppl. 3): e46-52.
[66]
Bernardon JK, Ferrari P, Baratieri LN, Rauber GB. Comparison of treatment time versus patient satisfaction in at-home and in-office tooth bleaching therapy. J Prosthet Dent 2015; 114(6): 826-30.
[67]
López Darriba I, Novoa L, de la Peña VA. Efficacy of different protocols for at-home bleaching: A randomized clinical trial. Am J Dent 2017; 30(6): 329-34.
[68]
Reis A, Tay LY, Herrera DR, Kossatz S, Loguercio AD. Clinical effects of prolonged application time of an in-office bleaching gel. Oper Dent 2011; 36(6): 590-6.
[69]
da Silva Marques DN, Silveira JM, Marques JR, Amaral JA, Guilherme NM, da Mata AD. Kinetic release of hydrogen peroxide from different whitening products. Eur J Esthet Dent 2012; 7(3): 344-52.
[70]
Bizhang M, Domin J, Danesh G, Zimmer S. Effectiveness of a new non-hydrogen peroxide bleaching agent after single use - a double-blind placebo-controlled short-term study. J Appl Oral Sci 2017; 25(5): 575-84.
[71]
Barry TN, Bailey CW, Ashcraft-Olmscheid D, Vandewalle KS. Effect of a new bleaching gel on tooth whitening. Oper Dent 2017; 42(5): 559-66.
[72]
Carlos NR, Bridi EC, Amaral F, França F, Turssi CP, Basting RT. Efficacy of home-use bleaching agents delivered in customized or prefilled disposable trays: a randomized clinical trial. Oper Dent 2017; 42(1): 30-40.
[73]
Rezende M, Loguercio AD, Kossatz S, Reis A. Predictive factors on the efficacy and risk/intensity of tooth sensitivity of dental bleaching: A multi regression and logistic analysis. J Dent 2016; 45: 1-6.
[74]
Paravina RD, Ghinea R, Herrera LJ, et al. Color difference thresholds in dentistry. J Esthet Restor Dent 2015; 27(Suppl. 1): S1-9.
[75]
Moghadam FV, Majidinia S, Chasteen J, Ghavamnasiri M. The degree of color change, rebound effect and sensitivity of bleached teeth associated with at-home and power bleaching techniques: A randomized clinical trial. Eur J Dent 2013; 7(4): 405-11.
[76]
Zhao K, Zong L, Zhang Q, Att W. Clinical comparison between two bleaching techniques: a 180-day follow-up study. Quintessence Int 2013; 44(8): 601-7.
[77]
Mondelli R, Rizzante F, Rosa ER, Borges A, Furuse AY, Bombonatti J. Effectiveness of LED/Laser irradiation on in-office dental bleaching after three years. Oper Dent 2018; 43(1): 31-7.

© 2024 Bentham Science Publishers | Privacy Policy