[1] Lussi A, Jaeggi T. Erosion-diagnosis and risk factors [J]. Clin Oral Investig, 2008,12(Suppl 1)∶S5-S13. [2] Salas MM, Nascimento GG, Huysmans MC, et al. Estimated prevalence of erosive tooth wear in permanent teeth of children and adolescents: an epidemiological systematic review and meta-regression analysis [J]. J Dent, 2015, 43(1)∶42-50 [3] Huysmans MC, Chew HP, Ellwood RP. Clinical studies of dental erosion and erosive wear [J]. Caries Res, 2011, 45(Suppl 1)∶60-68 [4] Turssi CP, Messias DF, Corona SM, et al. Viability of using enamel and dentin from bovine origin as a substitute for human counterparts in an intraoral erosion model [J]. Braz Dent J, 2010, 21(4)∶332-336 [5] Tschoppe P, Wolf O, Eichhorn M, et al. Design of a randomized controlled double-blind crossover clinical trial to assess the effects of saliva substitutes on bovine enamel and dentin in situ [J]. BMC Oral Health, 2011, 11∶13 [6] Rios D, Honório HM, Magalhães AC, et al. Effect of salivary stimulation on erosion of human and bovine enamel subjected or not to subsequent abrasion: an in situ/ex vivo study [J]. Caries Res, 2006, 40(3)∶218-223 [7] Sung YH, Kim HY, Son HH, et al. How to design in situ studies: an evaluation of experimental protocols [J]. Restor Dent Endod, 2014, 39(3)∶164-171 [8] West NX, Davies M, Amaechi BT. in vitro and in situ erosion models for evaluating tooth substance loss [J]. Caries Res, 2011, 45(Suppl 1)∶43-52 [9] 袁牧,张清,高学军.可口可乐对牙釉质早期脱矿后表面显微硬度的影响[J].中华口腔医学杂志,2016,51(6)∶357-361 [10] Barbour ME, Finke M, Parker DM, et al. The relationship between enamel softening and erosion caused by soft drinks at a range of temperatures [J]. J Dent, 2006, 34(3)∶207-213 [11] Barbour ME, Lussi A, Shellis RP. Screening and prediction of erosive potential [J]. Caries Res, 2011, 45(Suppl 1)∶24-32 [12] Wiegand A, Bichsel D, Magalhães AC, et al. Effect of sodium, amine and stannous fluoride at the same concentration and different pH on in vitro erosion [J]. J Dent, 2009,37(8)∶591-595 [13] Young A, Tenuta LM. Initial erosion models [J]. Caries Res, 2011,45(Suppl 1)∶S33-S42 [14] Hara AT, González-Cabezas C, Creeth J, et al. The effect of human saliva substitutes in an erosion-abrasion cycling model [J]. Eur J Oral Sci, 2008, 116(6)∶552-556 [15] Wegehaupt FJ, Attin T. The role of fluoride and casein phosphopeptide/amorphous calcium phosphate in the prevention of erosive/abrasive wear in an in vitro model using hydrochloric acid [J]. Caries Res, 2010, 44(4)∶358-363 [16] Hara AT, Zero DT. Analysis of the erosive potential of calcium-containing acidic beverages [J]. Eur J Oral Sci, 2008, 116(1)∶60-65 [17] Beyer M, Reichert J, Sigusch BW, et al. Morphology and structure of polymer layers protecting dental enamel against erosion [J]. Dent Mater, 2012, 28(10)∶1089-1097 [18] Yu H, Attin T, Wiegand A, et al. Effects of various fluoride solutions on enamel erosion in vitro [J]. Caries Res, 2010, 44(4)∶390-401 [19] Gracia LH, Brown A, Rees GD, et al. Studies on a novel combination polymer system: in vitro erosion prevention and promotion of fluoride uptake in human enamel [J]. J Dent, 2010, 38(Suppl 3)∶S4-S11 [20] Jager DH, Vissink A, Timmer CJ, et al. Reduction of erosion by protein-containing toothpastes [J]. Caries Res, 2013, 47(2)∶135-140 [21] 高峰,李涢.柠檬酸对牙本质酸蚀作用的体外研究[J].现代口腔医学杂志, 2015,29(3)∶144-148 [22] Schlueter N, Klimek J, Ganss C. Efficacy of tin-containing solutions on erosive mineral loss in enamel and dentine in situ [J]. Clin Oral Investig, 2011, 15(3)∶361-367 [23] Ganss C, Neutard L, von Hinckeldey J, et al. Efficacy of a tin/fluoride rinse: a randomized in situ trial on erosion [J]. J Dent Res, 2010, 89(11)∶1214-1218 [24] Kato MT, Leite AL, Hannas AR, et al. Gels containing MMP inhibitors prevent dental erosion in situ [J]. J Dent Res, 2010, 89(5)∶468-472 [25] Wiegand A, Hiestand B, Sener B, et al. Effect of TiF4, ZrF4, HfF4 and AmF on erosion and erosion/abrasion of enamel and dentin in situ [J]. Arch Oral Biol, 2010, 55(3)∶223-228 [26] Scaramucci T, Sobral MA, Eckert GJ, et al. In situ evaluation of the erosive potential of orange juice modified by food additives [J]. Caries Res, 2012, 46(1)∶55-61 [27] Amaechi BT, Karthikeyan R, Mensinkai PK, et al. Remineralization of eroded enamel by a NaF rinse containing a novel calcium phosphate agent in an in situ model: a pilot study [J]. Clin Cosmet Investig Dent, 2010, 2∶93-100 [28] Maggio B, Guibert RG, Mason SC, et al. Evaluation of mouthrinse and dentifrice regimens in an in situ erosion remineralisation model [J]. J Dent, 2010, 38(Suppl 3)∶S37-S44 |