[1] |
Cui SL, Liu P, Su XH, et al. Surveys in areas of high risk of iodine deficiency and iodine excess in China, 2012-2014: current status and examination of the relationship between urinary iodine concentration and goiter prevalence in children aged 8-10 years. Biomed Environ Sci, 2017; 30, 88−96. |
[2] |
Hetzel BS. Iodine deficiency disorders (IDD) and their eradication. Lancet, 1983; 2, 1126−9. |
[3] |
UNICEF. Global database, based on Multiple Indicator Cluster Surveys (MICS), Demographic and Health Surveys (DHS) and other nationally representative household surveys, 2013-2018. Percentage of households consuming salt with any iodine, 2018-2019. https://data.unicef.org/topic/nutrition/iodine/. [2021-12-11]. |
[4] |
Endemic Disease Control Center of the Chinese Center for Disease Control and Prevention. 2019 national iodine deficiency disorders monitoring report. 2019. (In Chinese) |
[5] |
Murray CW, Egan SK, Kim H, et al. US food and drug Administration's Total Diet Study: dietary intake of perchlorate and iodine. J Expo Sci Environ Epidemiol, 2008; 18, 571−80. doi: 10.1038/sj.jes.7500648 |
[6] |
Zava TT, Zava DT. Assessment of Japanese iodine intake based on seaweed consumption in Japan: a literature-based analysis. Thyroid Res, 2011; 4, 14. doi: 10.1186/1756-6614-4-14 |
[7] |
Perrine CG, Sullivan KM, Flores R, et al. Intakes of dairy products and dietary supplements are positively associated with iodine status among U. S. children. J Nutr, 2013; 143, 1155−60. doi: 10.3945/jn.113.176289 |
[8] |
Clifton VL, Hodyl NA, Fogarty PA, et al. The impact of iodine supplementation and bread fortification on urinary iodine concentrations in a mildly iodine deficient population of pregnant women in South Australia. Nutr J, 2013; 12, 32. doi: 10.1186/1475-2891-12-32 |
[9] |
SzymLek-Gay EA, Gray AR, Heath ALM, et al. Iodine-fortified toddler milk improves dietary iodine intakes and iodine status in toddlers: a randomised controlled trial. Eur J Nutr, 2020; 59, 909−19. doi: 10.1007/s00394-019-01950-5 |
[10] |
Nga TT, Winichagoon P, Dijkhuizen MA, et al. Multi-micronutrient-fortified biscuits decreased prevalence of anemia and improved micronutrient status and effectiveness of deworming in rural Vietnamese school children. J Nutr, 2009; 139, 1013−21. doi: 10.3945/jn.108.099754 |
[11] |
IGN. Program guidance on the use of iodized salt in industrially processed foods.https://www.ign.org/program-guidance-on-the-use-of-iodized-salt-in-industrially-processed-foods.htm. |
[12] |
Seguin RA, Aggarwal A, Vermeylen F, et al. Consumption frequency of foods away from home linked with higher body mass index and lower fruit and vegetable intake among adults: a cross-sectional study. J Environ Public Health, 2016; 2016, 3074241. |
[13] |
Bezerra IN, Curioni C, Sichieri R. Association between eating out of home and body weight. Nutr Rev, 2012; 70, 65−79. doi: 10.1111/j.1753-4887.2011.00459.x |
[14] |
Kant AK, Whitley MI, Graubard BI. Away from home meals: associations with biomarkers of chronic disease and dietary intake in American adults, NHANES 2005-2010. Int J Obes (Lond), 2015; 39, 820−7. doi: 10.1038/ijo.2014.183 |
[15] |
Zhang XF, Du WW, Zhang JG, et al. Association between the frequencies of eating out and overweight/obesity among dinners in restaurants aged 18-65 years in 6 Provinces of China. Chin Health Educ, 2020; 36, 779−83,92. (In Chinese |
[16] |
Penney TL, Almiron-Roig E, Shearer C, et al. Modifying the food environment for childhood obesity prevention: challenges and opportunities. Proc Nutr Soc, 2014; 73, 226−36. doi: 10.1017/S0029665113003819 |
[17] |
Powell LM, Nguyen BT. Fast-food and full-service restaurant consumption among children and adolescents: effect on energy, beverage, and nutrient intake. JAMA Pediatr, 2013; 167, 14−20. doi: 10.1001/jamapediatrics.2013.417 |
[18] |
Burke SJ, McCarthy SN, O'Neill JL, et al. An examination of the influence of eating location on the diets of Irish children. Public Health Nutr, 2007; 10, 599−607. doi: 10.1017/S1368980007258379 |
[19] |
Stig A, Jesper K, Klaus M, et al. Reliability of studies of iodine intake and recommendations for number of samples in groups and in individuals. Br J Nutr, 2008; 99, 813−8. doi: 10.1017/S0007114507842292 |
[20] |
Endemic Disease Control Center of the Chinese Center for Disease Control and Prevention. 2017 national survey results of water iodine content in drinking Water. 2017. (In Chinese) |
[21] |
Pan XB. Consumption of plain water and association with new-onset overweight risk among Chinese. Hebei Medical University. 2019. (In Chinese) |
[22] |
Endemic Disease Control Center of the Chinese Center for Disease Control and Prevention. 2011 national iodine deficiency disease condition surveillance report. 2011. (In Chinese) |
[23] |
Yang YX. China food composition tables standard edition. 6th ed. Peking University Press. 2018. (In Chinese) |
[24] |
Endemic Disease Control Center of the Chinese Center for Disease Control and Prevention. Prevention of iodine deficiency diseases manual. People's Medical Publishing House. 2007. |
[25] |
Zhang XL, Dai XD, Sun HJ, et al. Investigation on the iodine loss rate of iodine salt in cooking state. Chin J Chem Educ, 2008; 2, 61−2. (In Chinese |
[26] |
Zimmermann MB, Aeberli I, Andersson M, et al. Thyroglobulin is a sensitive measure of both deficient and excess iodine intakes in children and indicates no adverse effects on thyroid function in the UIC range of 100-299 μg/L: a UNICEF/ICCIDD study group report. J Clin Endocrinol Metab, 2013; 98, 1271−80. doi: 10.1210/jc.2012-3952 |
[27] |
State General Administration of Quality Supervision, Inspection and Quarantine, China National Standardization Administration. GB/T13025.7-2012 General test method in salt industry—Determination of iodine. Standards Press of China. 2012. (In Chinese) |
[28] |
Liu SJ, Chen ZH, Jia QZ, et al. WS276-2007 Diagnostic criteria for endemic goiter. People's Medical Publishing House. 2007 (In Chinese) |
[29] |
Tyrrell RL, Greenhalgh F, Hodgson S, et al. Food environments of young people: linking individual behaviour to environmental context. J Public Health (Oxf), 2018; 39, 95−104. |
[30] |
Ziauddeen N, Page P, Penney TL, et al. Eating at food outlets and leisure places and "on the go" is associated with less-healthy food choices than eating at home and in school in children: cross-sectional data from the UK National Diet and Nutrition Survey Rolling Program (2008-2014). Am J Clin Nutr, 2018; 107, 992−1003. doi: 10.1093/ajcn/nqy057 |
[31] |
Liu XB, Wang J, Li YJ, et al. Suggested Sample Size of 24-hour Urine Collection in Assessing Iodine Status among Adult Males with Insufficient Iodine Intake. Biomed Environ Sci, 2021; 34, 324−9. |
[32] |
Ministry of Health, National Standardization Management Committee. GB16006-2008 Criteria for elimination of iodine deficiency disorders. Standards Press of China. 2008. (In Chinese) |
[33] |
Endemic Disease Control Center of the Chinese Center for Disease Control and Prevention. 2019 national iodine deficiency disease condition surveillance report. 2019. (In Chinese) |
[34] |
Yu J, Liu P, Shen HM, et al. The inhabitant's iodine nutrition status of some coastal areas in China: a cross-sectional study. Chin J Endemiol, 2011; 30, 594−7. (In Chinese |
[35] |
Pearce EN, Pino S, He XM, et al. Sources of dietary iodine: bread, cows' milk, and infant formula in the Boston area. J Clin Endocrinol Metab, 2004; 89, 3421−4. doi: 10.1210/jc.2003-032002 |
[36] |
Thomson BM, Vannoort RW, Haslemore RM. Dietary exposure and trends of exposure to nutrient elements iodine, iron, selenium and sodium from the 2003-4 New Zealand Total Diet Survey. Br J Nutr, 2008; 99, 614−25. doi: 10.1017/S0007114507812001 |
[37] |
Abizari AR, Dold S, Kupka R, et al. More than two-thirds of dietary iodine in children in northern Ghana is obtained from bouillon cubes containing iodized salt. Public Health Nutr, 2017; 20, 1107−13. doi: 10.1017/S1368980016003098 |
[38] |
van der Reijden OL, Zimmermann MB, Galetti V. Iodine in dairy milk: Sources, concentrations and importance to human health. Best Pract Res Clin Endocrinol Metab, 2017; 31, 385−95. doi: 10.1016/j.beem.2017.10.004 |
[39] |
Brown IJ, Tzoulaki I, Candeias V, et al. Salt intakes around the world: implications for public health. Int J Epidemiol, 2009; 38, 791−813. doi: 10.1093/ije/dyp139 |
[40] |
Chotivichien S, Chongchaithet N, Aksornchu P, et al. Assessment of the contribution of industrially processed foods to salt and iodine intake in Thailand. PLoS One, 2021; 16, e0253590. doi: 10.1371/journal.pone.0253590 |
[41] |
World Health Organization. Guideline: fortification of food-grade salt with iodine for the prevention and control of iodine deficiency disorders. World Health Organization. 2014. |
[42] |
WHO, UNICEF, ICCIDD. Assessment of iodine deficiency disorders and monitoring their elimination: a guide for programme managers. 2nd ed. WHO. 2017. |
[43] |
Tan HX, luo X, Liu YY, et al. Detection and correlation between the content of sodium and iodine in pre-packaged foods. J Hyg Res, 2020; 49, 1002−7. (In Chinese |
[44] |
Chao H, Zhang YF, Liu P, et al. Relationship between iodine content in household iodized salt and thyroid volume distribution in children. Biomed Environ Sci, 2016; 29, 391−7. |
[45] |
Blankenship JL, Garrett GS, Khan NA, et al. Effect of iodized salt on organoleptic properties of processed foods: a systematic review. J Food Sci Technol, 2018; 55, 3341−52. doi: 10.1007/s13197-018-3277-9 |
[46] |
Knowles J, Van Der Haar F, Shehata M, et al. Iodine Intake through processed Food: Case Studies from Egypt, Indonesia, the philippines, the Russian federation and Ukraine, 2010-2015. Nutrients, 2017; 9, 797. doi: 10.3390/nu9080797 |
[47] |
Tabacchi G, Filippi AR, Amodio E, et al. A meta-analysis of the validity of FFQ targeted to adolescents. Public Health Nutr, 2016; 19, 1168−83. doi: 10.1017/S1368980015002505 |
[48] |
Casas R. Moving towards a healthier dietary pattern free of ultra-processed foods. Nutrients, 2021; 14, 118. doi: 10.3390/nu14010118 |
[49] |
Dicken SJ, Batterham RL. The role of diet quality in mediating the association between ultra-processed food intake, obesity and health-related outcomes: a review of prospective cohort studies. Nutrients, 2021; 14, 23. doi: 10.3390/nu14010023 |
[50] |
Yan YQ, Chen ZP. Discussion and suggestions on several problems in the application of standardized urinary iodine determination methods. Chin J Endemiol, 1999; 18, 60−2. (In Chinese |
[51] |
Perrine CG, Cogswell ME, Swanson CA, et al. Comparison of population iodine estimates from 24-hour urine and timed-spot urine samples. Thyroid, 2014; 24, 748−57. doi: 10.1089/thy.2013.0404 |