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1.
Chinese Journal of Endemiology ; (6): 531-533, 2009.
Article in Chinese | WPRIM | ID: wpr-642856

ABSTRACT

Objective To investigate the iodine nutritional status of targeted population in the high-risk areas of iodine deficiency disorders in Chongqing, so as to provide scientific evidence for establishing prevention and remedial measures. Methods Six towns were selected in Chengkou and Wuxi Counties to found suspected dementia patients born after first Jan, 1997. Two hundred children aged 8-10 years were investigated in every town. The thyroid volume, intelligence quotient(IQ) and urinary iodine of the children were examined. Forty women (pregnant and nursing women) were investigated in every town. The iodine content of salt from their home was measured. The thyroid volume was examined by palpation and B-uhrasound. IQ was measured by combined Raven Test in China(CRT-RC2). Urinary iodine was determined using the acid digest arsenic-cerium contacting method, and iodined salt was detected using direct titration method. Results Six suspected dementia patients were found in the local town hospital. Five eases were excluded. There was 1 case born in other place. The rates of goiter by palpation and B-ultrasound were 9.58%(92/960) and 8.89%(65/731), respectively. The median of urinary iodine of children and women was 319.15 μg/L and 248.42 μg/L, respectively. The mean of IQ of the children was 103.32. The coverage rate of iodine salt from residents was 98.82%(336/340). Conclusions The iodine nutrition of children was good and there is no newly occurred cretinism in Chengkou and Wuxi Counties. Goiter rate and median of urinary iodine aged 8-10 years and of women, coverage rate of iodine salt from resident has meet the standard set for basical elimination iodine deficiency disorders.

2.
Chinese Journal of Endemiology ; (6): 541-544, 2009.
Article in Chinese | WPRIM | ID: wpr-642520

ABSTRACT

Objective To find out the distribution pattern of environmental fluoride in the coal-burning endemic fluorosis areas to provide scientific evidence for establishing prevention and remedial measures in Chongqing. Methods According to historical data in Chongqing In 2008, 4 endemic villages(Lingyun and Lizi Villages of Wushan County, and Taiping and Daqing Villages of Pengshui County) and 2 non-endemic villages (ShuangLou and XianLong Villages of Yongchuan County) were investigated. Dental fluorosis of children in 8 to 12 year old and residents over 16 years of age for clinical skeletal fluorosis were examined in four endemic villages. Five households from each of 6 villages were taken, where 500 g of coal, mixed clay with coal, mixed coal of soil, coal cinder, soil were sampled; 15 people were taken in each village, each household gathering 500 g of corn, rice, potatoes, vegetables, grain and vegetable, 100 g of dried pepper and 250 ml of drinking water were sampled from 15 families of each village. Household drinking water samples were collected 1, each 250 ml. For those having tea-drinking habit, each household was collected 50 g of tea and 600 ml of drinking tea, the amount of fluoride were determined. Indoor and outdoor air was collected and measured in 5 households in each village. Results The detected rate of dental fluorosis of children in endemic areas was 74.65% (736/986). The detected rate of skeletal fluorosis of adult was 7.20%(736/986). The average fluoride content of coal, mixed clay with coal, mixed coal of soil, cinder coal, soil in the endemic villages was (310.56±209.46), (360.51±224.96), (293.62±65.15), (186.59±133.66), (497.54±294.70)mg/kg. The average fluoride content in non-endemic villages was (48.68±10.62), (275.66±62.69), (152.20±34.43), (209.14±188.66),269.98±58.21)mg/kg. The fluoride content level of endemic villages was significantly higher than that of non-endemic villages(t=7.67,31.54,5.82, 5.82, all P<0.05). The average fluoride content of drinking water, corn, pepper, flee, potato and vegetable in the endemic villages was (0.30±0.14)mg/L, (1.83±2.67), (23.50±91.80), (0.77±0.25), (0.44±0.11), (0.48±0.18)mg/kg, The average fluoride content in non-endemic village was (0.18±0.06)mg/L, (2.21±0.46), (2.82±2.51), (1.31±0.21), (0.64±0.41), (1.10±0.77)mg/kg. The fluoride content in drinking water and pepper in the endemic villages was significantly higher than that of the non-endemic villages(t=7.79, 2.33, all P<0.05). The fluoride content of rice, potato and vegetable in the non-endemic villages was significantly higher than that of the endemic villages(t=39.29,4.69,4.01, all P<0.05). There was no significant difference of fluoride content of tea and drinking tea between endemic villages[(99.41±55.83)mg/kg, (1.59±0.91)mg/L] and non-endemic villages[(79.95±43.78)mg/kg, (1.80±1.16)mg/L, t=1.01, 0.27, all P>0.05]. The amount of drinking tea in the endemic village[(1.45±0.68)L/d] was higher than that in non-endemic village[(1.00±0.47)L/d, t=4.27, P<0.05]. The average fluoride content of indoor air in the endemic village[(12.77±8.08)μg/m3] was higher than that in non-endemic village [(1.16±1.08)μg/m3, t=9.49, P<0.01]. There was no significant difference of fluoride content of outdoor air between endemic village and non-endemic village[(1.10±1.57), (0.39±0.31)μg/m3, t=2.01, P>0.05)]. Conclusions The fluoride source of coal-burning endemic fluorosis areas are coal and mixed coal of soil in Chongqing. Fluoride enters into human bodies mainly via respiratory, not from food. Although fluoride is rich in pepper, people don't eat it, so reducing the fluoride content in indoor air is the principle measure. Drinking tea may be was one factor of endemic fluorosis, which needs to be further studied.

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