Dental Erosion: Effect of Diet Drink Consumption on Permanent Dentition

Ahluwalia, N, Dwyer, J, Terry, A, Moshfegh, A, Johnson, C. 2016. Update on NHANES dietary data: focus on collection, release, analytical considerations, and uses to inform public policy. Adv Nutr. 7(1):121–134.
Google Scholar | Crossref | Medline Alvarez Loureiro, L, Fabruccini Fager, A, Alves, LS, Alvarez Vaz, R, Maltz, M. 2015. Erosive tooth wear among 12-year-old schoolchildren: a population-based cross-sectional study in Montevideo, Uruguay. Caries Res. 49(3):216–225.
Google Scholar | Crossref | Medline Barac, R, Gasic, J, Trutic, N, Sunaric, S, Popovic, J, Djekic, P, Radenkovic, G, Mitic, A. 2015. Erosive effect of different soft drinks on enamel surface in vitro: application of stylus profilometry. Med Princ Pract. 24(5):451–457.
Google Scholar | Crossref | Medline Bartlett, DW, Lussi, A, West, NX, Bouchard, P, Sanz, M, Bourgeois, D. 2013. Prevalence of tooth wear on buccal and lingual surfaces and possible risk factors in young European adults. J Dent. 41(11):1007–1013.
Google Scholar | Crossref | Medline Centers for Disease Control and Prevention . 2011. National Health and Nutrition Examination Survey: 2011–2012 overview. Hyattsville (MD): US Department of Health and Human Services [accessed 2021 Sep 7]. https://wwwn.cdc.gov/nchs/nhanes/ContinuousNhanes/overview.aspx?BeginYear=2011
Google Scholar Conklin, AI, Forouhi, NG, Surtees, P, Khaw, KT, Wareham, NJ, Monsivais, P. 2014. Social relationships and healthful dietary behaviour: evidence from over-50s in the EPIC cohort, UK. Soc Sci Med. 100(100):167–175.
Google Scholar | Crossref | Medline Dye, BA, Nowjack-Raymer, R, Barker, LK, Nunn, JH, Steele, JG, Tan, S, Lewis, BG, Beltran-Aguilar, ED 2008. Overview and quality assurance for the oral health component of the National Health and Nutrition Examination Survey (NHANES), 2003–04.J Public Health Dent. 68(4):218–226.
Google Scholar | Crossref | Medline | ISI Ehlen, LA, Marshall, TA, Qian, F, Wefel, JS, Warren, JJ. 2008. Acidic beverages increase the risk of in vitro tooth erosion. Nutr Res (New York, NY). 28(5):299–303.
Google Scholar | Crossref | Medline Ganss, C . 2006. Definition of erosion and links to tooth wear. Monogr Oral Sci. 20:9–16.
Google Scholar | Crossref | Medline Ganss, C, Lussi, A. 2008. Current erosion indices—flawed or valid? Summary. Clin Oral Investig. 12 Suppl 1:S1–S3.
Google Scholar | Crossref Gardener, H, Rundek, T, Markert, M, Wright, CB, Elkind, MSV, Sacco, RL. 2012. Diet soft drink consumption is associated with an increased risk of vascular events in the Northern Manhattan Study. J Gen Intern Med. 27(9):1120–1126.
Google Scholar | Crossref | Medline Gravelle, BL, Hagen Ii, TW, Mayhew, SL, Crumpton, B, Sanders, T, Horne, V. 2015. Soft drinks and in vitro dental erosion. Gen Dent. 63(4):33–38.
Google Scholar | Medline Jameel, RA, Khan, SS, Abdul Rahim, ZH, Bakri, MM, Siddiqui, S. 2016. Analysis of dental erosion induced by different beverages and validity of equipment for identifying early dental erosion, in vitro study. J Pak Med Assoc. 66(7):843–848.
Google Scholar | Medline Khamverdi, Z, Vahedi, M, Abdollahzadeh, S, Ghambari, MH. 2013. Effect of a common diet and regular beverage on enamel erosion in various temperatures: an in-vitro study.J Dent (Tehran). 10(5):411–416.
Google Scholar | Medline Kirthiga, M, Poornima, P, Praveen, R, Sakeena, B, Disha, P. 2015. Dental erosion and its associated factors in 11-16-year old school children. J Clin Pediatr Dent. 39(4):336–342.
Google Scholar | Crossref | Medline Lee, RD, Nieman, DC. 1996. Nutritional assessment. 2nd ed. Cairo (Egypt): FAO. Lussi, A, Carvalho, TS. 2015. Analyses of the erosive effect of dietary substances and medications on deciduous teeth. PloS One. 10(12):e0143957.
Google Scholar Lussi, A, Schaffner, M. 2000. Progression of and risk factors for dental erosion and wedge-shaped defects over a 6-year period. Caries Res. 34(2):182–187.
Google Scholar | Crossref | Medline McGuire, J, Szabo, A, Jackson, S, Bradley, TG, Okunseri, C. 2009. Erosive tooth wear among children in the united states: relationship to race/ethnicity and obesity. Int J Paediatr Dent. 19(2):91–98.
Google Scholar | Crossref | Medline Millward, A, Shaw, L, Smith, AJ, Rippin, JW, Harrington, E. 1994. The distribution and severity of tooth wear and the relationship between erosion and dietary constituents in a group of children. Int J Paediatr Dent. 4(3):151–157.
Google Scholar | Crossref | Medline Mulic, A, Skudutyte-Rysstad, R, Tveit, AB, Skaare, AB. 2012. Risk indicators for dental erosive wear among 18-yr-old subjects in oslo, norway. Eur J Oral Sci. 120(6):531–538.
Google Scholar | Crossref | Medline Murakami, C, Oliveira, LB, Sheiham, A, Nahas, Pires, Correa, MS, Haddad, AE, Bonecker, M. 2011. Risk indicators for erosive tooth wear in Brazilian preschool children. Caries Res. 45(2):121–129.
Google Scholar | Crossref | Medline National Center for Health Statistics . 2004. National Health and Nutrition Examination Survey: dental examiners procedures manual. Hyattsville (MD): US Department of Health and Human Services.
Google Scholar Nettleton, JA, Lutsey, PL, Wang, Y, Lima, JA, Michos, ED, Jacobs, DR 2009. Diet soda intake and risk of incident metabolic syndrome and type 2 diabetes in the Multi-ethnic Study of Atherosclerosis (MESA). Diabetes Care. 32(4):688–694.
Google Scholar | Crossref | Medline | ISI Nunn, JH, Gordon, PH, Morris, AJ, Pine, CM, Walker, A. 2003. Dental erosion—changing prevalence? A review of British national childrens’ surveys. Int J Paediatr Dent. 13(2):98–105.
Google Scholar | Crossref | Medline ObamaCareFacts.com . 2014. ObamaCare facts: federal poverty level guidelines [accessed 2021 Sep 7]. http://obamacarefacts.com/federal-poverty-level/
Google Scholar Okunseri, C, Okunseri, E, Gonzalez, C, Visotcky, A, Szabo, A. 2011. Erosive tooth wear and consumption of beverages among children in the United States. Caries Res. 45(2):130–135.
Google Scholar | Crossref | Medline Pase, MP, Himali, JJ, Beiser, AS, Aparicio, HJ, Satizabal, CL, Vasan, RS, Seshadri, S, Jacques, PF. 2017. Sugar- and artificially sweetened beverages and the risks of incident stroke and dementia: a prospective cohort study. Stroke. 48(5):1139–1146.
Google Scholar | Crossref | Medline Salas, MM, Nascimento, GG, Huysmans, MC, Demarco, FF. 2015. Estimated prevalence of erosive tooth wear in permanent teeth of children and adolescents: an epidemiological systematic review and meta-regression analysis. J Dent. 43(1):42–50.
Google Scholar | Crossref | Medline Salas, MM, Nascimento, GG, Vargas-Ferreira, F, Tarquinio, SB, Huysmans, MC, Demarco, FF. 2015. Diet influenced tooth erosion prevalence in children and adolescents: results of a meta-analysis and meta-regression. J Dent. 43(8):865–875.
Google Scholar | Crossref | Medline | ISI Samman, M, Kaye, E, Cabral, H, Scott, T, Sohn, W. 2020. The effect of diet drinks on caries among us children: cluster analysis. J Am Dent Assoc. 151(7):502–509.
Google Scholar | Crossref | Medline Sohn, W, Burt, BA, Sowers, MR. 2006. Carbonated soft drinks and dental caries in the primary dentition. J Dent Res. 85(3):262–266.
Google Scholar | SAGE Journals | ISI Sovik, JB, Skudutyte-Rysstad, R, Tveit, AB, Sandvik, L, Mulic, A. 2015. Sour sweets and acidic beverage consumption are risk indicators for dental erosion. Caries Res. 49(3):243–250.
Google Scholar | Crossref | Medline Struzycka, I, Rusyan, E, Boguslawska-Kapala, A. 2014. Prevalence of dental erosion in young adults aged 18 years in Poland. Przegl Epidemiol. 68(4):689–693.
Google Scholar | Medline Suez, J, Korem, T, Zeevi, D, Zilberman-Schapira, G, Thaiss, CA, Maza, O, Israeli, D, Zmora, N, Gilad, S, Weinberger, A, et al. 2014. Artificial sweeteners induce glucose intolerance by altering the gut microbiota. Nature. 514(7521):181–186.
Google Scholar | Crossref | Medline | ISI Vinther, JL, Conklin, AI, Wareham, NJ, Monsivais, P. 2016. Marital transitions and associated changes in fruit and vegetable intake: findings from the population-based prospective EPIC-Norfolk cohort, UK. Soc Sci Med. 157:120–126.
Google Scholar | Crossref | Medline Wirfält, AK, Jeffery, RW. 1997. Using cluster analysis to examine dietary patterns: nutrient intakes, gender, and weight status differ across food pattern clusters. J Am Diet Assoc. 97(3):272–279.
Google Scholar | Crossref | Medline

留言 (0)

沒有登入
gif