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1.
Chinese Journal of Endemiology ; (12): 664-668, 2022.
Article in Chinese | WPRIM | ID: wpr-955766

ABSTRACT

Objective:To explore the effect of physical development on thyroid volume of children aged 8 - 10 years in Sichuan Province, and explore the thyroid volume correction method suitable for school-age children, so as to accurately prevent and control iodine deficiency disorders.Methods:From June to July 2020, Shuangliu District of Chengdu City, Pengshan District of Meishan City, Miyi County of Panzhihua City and Qingchuan County of Guangyuan City were selected as the survey counties (districts). One township (town and street) was selected from each county (district) according to the five directions of East, West, South, North and Middle, one primary school was selected from each township (town and street), and 40 children aged 8 - 10 years (gender and age balanced) were selected as the survey subjects from each primary school, height and weight were measured, the body mass index (BMI) and body surface area (BSA) were calculated. Thyroid volume was measured by B-ultrasound, and the different thyroid volume indexes [height volume index 1 (HVI1), height volume index 2 (HVI2), body mass volume index (BMIV), weight and height volume index (WHVI), body surface volume index (BSAV)] were calculated, respectively. Urine samples of all children were collected, the iodine concentration in urine was measured, and the correlation between different measurement indexes and children's growth and development indexes was analyzed.Results:A total of 805 children aged 8 - 10 years were investigated, including 403 boys and 402 girls. There were 312, 288 and 205 children in the 8-, 9- and 10-year-old groups, respectively. A total of 805 urine samples were collected, and the median urinary iodine was 251.4 μg/L. There was no statistically significant difference in thyroid volume between boys and girls ( Z = - 0.44, P = 0.661), but was statistically significant difference between ages ( H = 64.95, P < 0.001). In all age groups, thyroid volume was positively correlated with height and weight (8-year-old group: r = 0.29, 0.42, P < 0.001; 9-year-old group: r = 0.29, 0.41, P < 0.001; 10-year-old group: r = 0.34, 0.47, P < 0.001). In all age groups, after HVI1 correction, thyroid volume was positively correlated with height and weight (8-year-old group: r = 0.13, 0.32, P < 0.05; 9-year-old group: r = 0.12, 0.30, P < 0.05; 10-year-old group: r = 0.18, 0.37, P < 0.05). In all age groups, there was a positive correlation between thyroid volume and weight after HVI2 correction (8-year-old group: r = 0.20, P < 0.001; 9-year-old group: r = 0.17, P = 0.004; 10-year-old group: r = 0.26, P < 0.001). In the 8- and 10-year-old groups, there was a positive correlation between thyroid volume and height after BMIV correction ( r = 0.20, P < 0.001; r = 0.21, P = 0.003). In all age groups, there was a negative correlation between thyroid volume and height and weight after WHVI correction (8-year-old group: r = - 0.35, - 0.37, P < 0.001; 9-year-old group: r = - 0.38, - 0.39, P < 0.001; 10-year-old group: r = - 0.31, - 0.38, P < 0.001). In the 8-year-old group, there was a positive correlation between thyroid volume and weight after BSAV correction ( r = 0.11, P = 0.045). Conclusions:Thyroid volume is closely related to height and weight. It may be inappropriate to judge goiter in children only based on age. After the preliminary comparison of five correction methods, it is found that BSAV is better.

2.
Chinese Journal of Endemiology ; (12): 199-204, 2021.
Article in Chinese | WPRIM | ID: wpr-883693

ABSTRACT

Objective:To understand the levels of selenium and T-2 toxin in the historical critical disease area of Kashin-Beck disease in Aba State of Sichuan Province.Methods:From July 2018 to February 2019, in five cities (counties) of historical critical Kashin-Beck disease areas, namely, Ma'erkang, Rangtang, Aba, Ruo'ergai and Hongyuan, one township was selected, respectively, and then one village in the historical critical disease area and one village in non-disease area were selected from the selected townships. Hair samples from 30 children aged 6 to 12 years old were collected to test selenium content in each village. Staple food samples of 10 households were collected to test the selenium and T-2 toxin contents in each village. Ten soil samples were collected from each village to test the selenium content.Results:The medians selenium of children's hair in the diseased and non-diseased villages ( n= 180, 120) were 0.260 0 and 0.330 0 mg/kg, respectively, and the diseased village was lower than non-diseased village ( Z = - 6.319, P < 0.01). In Ma'erkang and Hongyuan, the medians selenium in the diseased villages were lower than those in non-diseased villages ( Z = - 3.327, - 4.939, P < 0.01), and there were no statistically significant differences between the diseased villages and non-diseased villages in Rangtang and Ruo'ergai ( P > 0.05). The medians selenium of staple food in the diseased and non-diseased villages ( n = 110, 70) were 0.005 8 and 0.018 0 mg/kg, respectively, and the diseased village was lower than non-diseased village ( Z = - 2.263, P < 0.05). In Ruo'ergai, the median selenium in the diseased village was lower than that in non-diseased village ( Z = - 2.306, P < 0.05), and there were no statistically significant differences between the diseased villages and non-diseased villages in Ma'erkang, Rangtang and Hongyuan ( P > 0.05). The T-2 toxin contents in staple food were all less than detection limit (1 μg/kg) in the diseased and non-diseased villages ( n = 103, 65). The soil selenium contents in the diseased and non-diseased villages ( n = 60, 40) were (0.045 3 ± 0.021 5) and (0.065 8 ± 0.045 4) mg/kg, respectively, and the diseased village was lower than non-diseased village ( t = 2.672, P < 0.05). The soil selenium content in the diseased village was lower than that in non-diseased village in Hongyuan ( t = 14.838, P < 0.01). There were no statistically significant differences in the soil selenium content between the diseased villages and non-diseased villages in Ma'erkang, Rangtang and Ruo'ergai ( P > 0.05). Conclusions:The overall selenium level of children's hair is at a medium level (0.25 - < 0.50 mg/kg) in the historical critical disease area of Aba State of Sichuan Province, the selenium levels of staple food and soil are at a deficiency level (< 0.025, < 0.125 mg/kg), and the diseased villages are lower than non-diseased villages. No T-2 toxin is detected in staple food.

3.
Chinese Journal of Endemiology ; (12): 648-651, 2021.
Article in Chinese | WPRIM | ID: wpr-909070

ABSTRACT

Objective:To understand the prevalence of hypertension among residents in Keshan disease areas of Sichuan Province, in order to provide scientific basis for prevention and control of hypertension among residents in Keshan disease areas in Sichuan Province in the future.Methods:From 2017 to 2018, Keshan disease case search was carried out in 28 Keshan disease counties (cities, districts, referred to as counties) in Sichuan Province. According to the results of case search, survey sites were selected. Questionnaire survey and blood pressure measurement on permanent residents of the survey sites were conducted according to the unified Keshan disease monitoring plan by professionals. The diagnostic criteria of hypertension refer to the "Chinese Guidelines for Prevention and Treatment of Hypertension" (2019).Results:Totally 24 709 people aged 16 and over were investigated in 28 counties, and 6 022 patients with hypertension were detected, with a detection rate of 24.4% (6 022/24 709); the prevalence of hypertension was 25.5% (2 597/10 199) in male and 23.6% (3 425/14 510) in female; isolated systolic hypertension accounted for 46.5% (2 798/6 022); the constituent ratio of hypertension was 61.9% (3 725/6 022) in grade one, 27.6% (1 665/6 022) in grade two and 10.5% (632/6 022) in grade three.Conclusions:Although the detection rate of hypertension in Keshan disease areas in Sichuan Province is lower than that in the whole country (26.3%), it is still a long-term public health problem. The monitoring of related diseases and health education should be carried out continuously in Keshan disease areas.

4.
Chinese Journal of Microbiology and Immunology ; (12): 79-83, 2009.
Article in Chinese | WPRIM | ID: wpr-381252

ABSTRACT

objective To investigate the epidemiological and molecular typing features of the pathogenic Haemophilus influenzae(H.influenzae)by biotyping,serotyping and pulsed-field gel electrophoresis(PFGE).Methods A total of 273 invasive isolates of H influenzae were collected from the pediatric patients with pneumonia at Chengdu Children Hospital of Sichuan province from 1988 and 2004 to 2007.The idenbfication of H.influenzae strains were done according to the laboratory standard methodology described by Manual of Clinical Microbiology(American).All strains were biotyped according to Kilian's classification with the API[R]NH system.And serotyped by a slide agglutination assay with type a to f specific antlaerum as described by Pittman.PCR method for identification of H.influenzae were performed as described by Falla.One hundred of 273 strains were analyzed by PFGE as described by Saito with some modifications.The resuIts of PFGE were analyzed by Bionumerics soft(Version 4.0,Applied Maths BVBA,Belium).Restilts 78.2%of 273 cases occurred under 1 years old.Eight biotypes were found among the 273 H.influenzae isolates.17.6%(48/273)of all isolates belonged to biotype Ⅰ,43.6%(119/273)were biotype Ⅱ,22.7%(62/273)were biotype Ⅲ,7.3%(20/273)were biotype Ⅳ,5.9%(16/273)were biotype Ⅴ,0.4%(1/273)were biotype Ⅵ,1.8%(5/273)were biotype Ⅶ and 0.7%(2/273)were biotype Ⅷ.respeetively.99.6% of all 273 isolates were nontypeable.There was only one isolate was serotvpe f Ninty-six PFGE genotypes were obtained in this study.One hundred strains demonstrated a variety of genomic Datterns by PFGE.The most isolates of the flame PFGE genotype(type 35)was 3 isolates.Each of93 PFGE genotypes was represented by only a single isolate.The genotypes distribution didn't correlate with the time distribution of the strains were isolated.Conclusion Nontypeable H.influenzae primarily caused acute Dneumoma in children under 1 years old.They mostly belonged to biotype Ⅰ,Ⅱ and Ⅲ biotypes.The nontypeable H.influenzae strains appeared to more heterogeneous patterns by PFGE genotyping.Genotyping may helP understand the molecular characteristics of outbreak and endemicity according to the results of PFGE.PFGE genotyping proved to have a much stronger discriminatory power than either serotyping or biotyping.Our findings suggest that PFGE analysis is useful for the epidemiologieal study of H.influenzae infections.

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