1 |
Hicks J, Flaitz C. Role of remineralizing fluid in vitro enamel caries formation and progression. Quintessence Int, 2007,38(4):313-319.
|
2 |
Yamazaki H, Margolis HC. Enhanced enamel remineralization under acidic conditions in vitro. J Dent Res, 2008,87(6):569-574.
|
3 |
Tucker K, Adams M, Shaw L, et al. Human enamel as a substrate for in vitro acid dissolution studies: influence of tooth surface and morphology. Caries Res, 1998,32(2):135-140.
|
4 |
叶玲,苏勤,周学东. 体外人工龋模型的建立方法及检测新技术. 广东牙病防治, 2002,10(4):310-311.
|
5 |
Rehh ES, Douglas WH, Levine MJ. Lubrication of human and bovine enamel compared in an artificial mouth. Arch Oral Biol, 1995,40(11):1063-1072.
|
6 |
Magalhães AC, Moron BM, Comar LP, et al. Comparison of cross-sectional hardness and transverse microradiography of artificial carious enamel lesions induced by different demineralising solutions and gels. Caries Res, 2009,43(6):474-483.
|
7 |
Cury JA, Tenuta LM. How to maintain a cariostatic fluoride concentration in the oral environment. Adv Dent Res, 2008,20(1):13-16.
|
8 |
Alvarez JA, Rezende KM, Marocho SM, at al. Dental fluorosis: exposure, prevention and management. Med Oral Patol Oral Cir Bucal,2009,14(2):E103-107.
|
9 |
Cury JA, Tenuta LM. Enamel remineralization: controlling the caries disease or treating early caries lesions? Braz Oral Res, 2009,23 Suppl 1:23-30.
|
10 |
Rios D, Magalhães AC, Polo RO, at al. The efficacy of a highly concentrated fluoride dentifrice on bovine enamel subjected to erosion and abrasion. J Am Dent Assoc, 2008,139(12):1652-1656.
|
11 |
Petersson LG, Kambara M. Remineralization study of artificial root caries lesions after fluoride treatment. An in vitro study using electric caries monitor and transversal micro-radiography. Gerodontology, 2004,21(2):85-92.
|
12 |
黄彦,朱洪水,何予敏. 不同浓度氟化泡沫对牙釉质再矿化影响的对比研究. 江西医药, 2007,42(3):189-191.
|
13 |
Ferreim MA, Latorre Mdo R, Rodrigues CS, et al. Effect of regular fluoride gel application on incipient carious lesions. Oral Health Prey Dent, 2005,3(3):141-149.
|
14 |
Hong L, Watkins CA, Ettinger RL, et al. Effect of topical fluoride and fluoride varnish on in vitro root surface lesions. Am J Dent,2005,18(3):182-187.
|
15 |
陈舟,罗宗莲,杨松. 含氟牙膏对釉质脱矿影响的体外研究. 华西口腔医学杂志, 2001,2(1):20-22.
|
16 |
Ivancakova R, Harless JD, Hoqan MM, et al. Effect of 2% plain and fluoridated milk on root surface caries in vitro. Spec Care Dentist,2005,25(2):118-123.
|
17 |
Särner B, Birkhed D, Huysmans MC, et al. Effect of fluoridated toothpicks and dental flosses on enamel and dentine and on plaque composition in situ. Caries Res, 2005,39(1):52-59.
|
18 |
吕奎龙,滕立群,孟祥才,等. 纳米羟基磷灰石牙膏对人工龋再矿化研究. 黑龙江医药科学, 2002,25(3):26-27.
|
19 |
Fathi MH, Mortazavi V, Hanifi A, et al. Synthesis, characterization and bioactivity evaluation of nano-structured hydroxyapatite.Transactions on Engineering Sciences, 2009, 64:309-317.
|
20 |
Huang SB, Gao SS, Yu HY. Effect of nano-hydroxyapatite concentration on remineralization of initial enamel lesion in vitro. Biomedical Mater, 2009,4(3):811-819.
|
21 |
Zhang XD, Li XD, Fan HS, et al. Combined effects of nano-hydroxyapatite and NaF on remineralization of early caries lesion. Bioceramics,2007,19:1347-1350.
|
22 |
金燕,矢小萍,钟庐云. 碳酸氢钠溶液对早期龋再矿化作用的定量分析. 口腔医学, 2004,24(1):11-12.
|
23 |
Suge T, lshikawa K, Kawasaki A, et a1. Evaluation of post-treatment solutions for clinical use with the calcium phosphate precipitation method. J Dent, 1999,27(2):487-496.
|
24 |
Legier-Vargas K, Mundorff-Shrestha SA, Featherstone JD, at al. Effects of sodium bicarbonate dentifrices on the levels of cariogenic bacteria in human saliva. Caries Res, 1995,29(2):143-147.
|
25 |
Goldberg M, Apap M, Le Denmat D. Calcium and phosphate uptake of human dental enamal treated with sodium bicarbonate. J Biol Buccale, 1990,18(1):55-58.
|
26 |
Tanaka K, Iijima Y. Acid resistance of human enamel in vitro after bicarbonate application during remineralization. J Dent, 2001,29(6):421-426.
|
27 |
St John KR. Biocompatibility of dental materials. Dent Clin North Am, 2007,51(3):747-760.
|
28 |
Reynolds EC.Calcium phosphate-based remineralization systems: scientific evidence? Aust Dent J, 2008,53(3):268-273.
|
29 |
Rose RK. Binding characteristics of Streptococcus mutans for calcium and casein phosphopeptide. Caries Res, 2000,34(5):427-431.
|
30 |
Reynolds EC, Cai F, Shen P, et al. Retention in plaque and remineralization of enamel lesions by various forms of calcium in a mouthrinse or sugar-free chewing gum. Dent Res, 2003,82(3):206-211.
|
31 |
Rose RK. Effects of an anticariogenic casein phosphopeptide on calcium diffusion in streptococcal model dental plaques. Arch Oral Biol,2000,45(7):569-575.
|
32 |
Neuhaus KW, Lussi A. Casein phosphopeptide--amorphous calcium phosphate (CPP-ACP) and its effect on dental hard tissues. Schweiz Monatsschr Zahnmed, 2009,119(2):110-116.
|
33 |
Llena C, Forner L, Baca P. Anticariogenicity of casein phosphopeptide-amorphous calcium phosphate: a review of the literature. J Contemp Dent Pract, 2009,10(3):1-9.
|
34 |
Azarpazhooh A, Limeback H. Clinical efficacy of casein derivatives: a systematic review of the literature. J Am Dent Assoc, 2008,139(7):915-924.
|
35 |
Lata S, Varghese NO, Varughese JM. Remineralization potential of fluoride and amorphous calcium phosphate-casein phospho peptide on enamel lesions: An in vitro comparative evaluation. J Conserv Dent, 2010,13(1):42-46.
|
36 |
Reynolds EC, Cai F, Cochrane NJ, et al. Fluoride and casein phosphopeptide-amorphous calcium phosphate. J Dent Res, 2008,87(4):344-348.
|
37 |
Cochrane NJ, Saranathan S, Cai F, et al. Enamel subsurface lesion remineralisation with casein phosphopeptide stabilised solutions of calcium, phosphate and fluoride. Caries Res, 2008,42(2):88-97.
|
38 |
Reynolds EC. Casein Phosphopeptide-amorphous calcium phosphate: the scientific evidence. Adv Dent Res, 2009,21(1):25-29.
|
39 |
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. Caries Res, 2006,40(3):218-223.
|
40 |
Van Nieuw Amerongen A, Bolscher JG, Veerman EC. Salivary proteins: protective and diagnostic value in cariology? Caries Res, 2004,38(3):247-253.
|
41 |
Miake Y, Saeki Y, Takahashi M, et al. Remineralization effects of xylitol on demineralized enamel. J Electron Microsc, 2003,52(5):471-476.
|
42 |
楚金普,李继遥,郝玉庆,等. 中药五倍子、蜂房提取物对早期釉质龋再矿化作用的实验研究. 时珍国医国药, 2007,18(11):2604-2606.
|
43 |
刘晓静,郑宝山,王滨滨,等. 茶防龋研究进展. 地球与环境, 2005,33(2):91-96.
|
44 |
李海清,牛玉梅,线恒泽. 氯化钠溶液对牙本质再矿化作用的影响. 口腔医学研究, 2006,22(2):152-154.
|