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M Tajtáková

Publications and source records attributed to M Tajtáková.

At least 19 recordsLinked to original sources

[The thyroid gland in women during the reproductive age].

OBJECTIVE: To find out thyroid volume and its functional status in women in reproductive age as well as possible correlation between thyroid size and functional status and age and residential location of women. DESIGN: Project can be characterized as an epidemiological study and consists of three separate observations. SETTING: 1st Internal Clinic, UPJS, Kosice, Medical Faculty, Slovakia. METHODS: 347 women from different regions of Eastern Slovakia (160 aged 20-29 and 187 aged 30-40) were measured thyroid volume via ultrasonography and thyroid functional status by RIA TSH and anti TPO examinations. Urinary iodine was examined in 70 cases. In this part of the study correlation between thyroid size and functional status and age and residential location of women were determined. Four days after delivery thyroid volume in 99 women was measured. The volume was correlated with the number of previous pregnancies. Thyroid volume was correlated with residential location and number of pregnancies of 77 women that had not delivered in the previous year. RESULTS: Women aged 20-29 years had thyroid volume smaller than women aged 30-40 (8.78 ml/10.66 ml; p < 0.01). The size of thyroid gland was not only affected by age but also by residential location. The largest thyroid glands and increased level of anti TPO antibodies in both age groups were found in women from agricultural regions and regions close to chemical factory. The women with anti TPO antibodies had increased level of TSH as well as more frequently changed echogenity of thyroid gland. Median of urinary iodine was 13.2 micrograms/dl in both age groups and indicated sufficient iodine intake in the observed area. The volume of thyroid gland four days after delivery did not exceed 22 ml in 89.9% of cases. Significant difference in size of thyroid gland depending on number of previous deliveries was not only observed in women 4 days after delivery but also in those that had not delivered during previous year. The largest volumes were measured in secundiparous mothers. CONCLUSION: Polluted environment affects the size and functional status of thyroid gland. Environment can via this negative impact on thyroid gland influence fertility, pregnancy and fetus development in women in reproductive age.

Adult↗

Further studies of blood levels of some tumor markers in the area polluted by polychlorinated biphenyls and control population.

The levels of beta2-microglobulin (beta2-m), alpha-fetoprotein (AFP) and thyroglobulin (TG) were measured in the serum of 245 employees of chemical factory formerly producing polychlorinated biphenyls (PCB) consisting of 54 males (age range 24-65 years, median 45) and 191 females (age range 20-69 years, median 45). The control population consisted of 636 adults from control areas of northwest and east Slovakia. The frequency of beta2-microglobulin levels lower than 1.6 microg/ml in 242 employees of chemical factory was 76.8% (186/242) which was three times higher (P<0.001) than 24.4% (155/635) in 636 controls. Still more remarkable difference was obtained when using the cut/off level of 1.2 microg/ml, the frequency of such values in the employees being 45.4% (110/242) vs. 4.4% (28/635) in the controls. In contrast, no difference in alpha-fetoprotein levels was observed between the employees and the controls, the respective frequency of these < 5.0 ng/ml being 87.6% (212/242) vs. 86.2% (389/451) and these < 10.0 ng/ml being 100.0% (242/242) vs. 97.8% (441/451). Similarly, the frequency of normal thyroglobulin levels < 50.0 ng/ml) did not differ, being 95.6% (174/182) in the employees and 87.9% (87/99) in the controls. Most of a total of 20 cases with thyroglobulin level > 50.0 ng/ml showed sonographicaly enlarged and multinodular thyroid with focal or diffuse hypoechogenicity, three of them showed solitary nodule with a diameter > 10 mm. Although the decreased levels of beta2-microglobulin might be somehow related to the modulation of immune system, more plausible explanation appears to be the possible impairment of renal tubules by PCB similar to that caused by heavy metals resulting in increased urinary excretion of beta2-microglobulin and decrease of its blood level.

Adult↗

[Effect of nitrates on active transport of iodine].

Active iodine transport into the thyrocyte is catalyzed by the transmembrane transport protein Na+/J- symport (NIS) Nitrates can expel iodine from the bond with this transport protein which was found not only in the thyrocyte membrane but also in the cell membrane of the gastric mucosa. The weight of the thyroid gland in mg was significantly greater even when calculated in relation to body weight in the NIT group of rats who were given for 6 days nitrate by gastric tube (100 mg/kg/day) as compared with controls (CON) 17.56 +/- 8.4, 0.07 +/- 0.03/12.10 +/- 9.57, 0.05 +/- 0.03, P < or = 0.01. A lower thyroid activity in per cent calculated per 1 mg of its weight (1.39 +/- 1.0/2.22 +/- 0.9, P < or = 0.01), a higher activity in blood before removal of the thyroid gland (8.54 +/- 4.09/5.45 +/- 2.78) and a lower one after removal of the thyroid gland (1.09 +/- 0.05/0.21 +/- 0.10) before oral administration of I131 in group NIT, suggests a negative effect of nitrates on active iodine transport not only at the level of the thyrocyte but also possible interaction with iodine at the level of the digestive tract. A significantly higher serum level of TT3 in group NIT (0.66 +/- 0.27/0.44 +/- 0.21, P < or = 0.01 regardless of the TSH serum level (2.31 +/- 1.83/2.64 +/- 1.52) and T4 (22.72 +/- 8.2/25 +/- 11.0) suggests a qualitative change in thyroid hormone production in favour of T3 caused even by short-term nitrate administration.

Animals↗

[Epidemiological profile of thyroid volume and disorders in Slovakia].

UNLABELLED: After 45 years of successful iodine prophylaxis a total of 6324 subject aged 7 to 70 years from East (72.0%), Central (16.2%) and West Slovakia (11.8%) were examined. The thyroid volume (ThV) by ultrasound was examined in a total of 6045 subjects. Serum level of thyrotropin (TSH) was estimated in 1919 (30.3%) and anti-thyroperoxidase antibodies (anti-TPO) in 2589 (40.9%) subjects. Iodine was estimated in 1983 (31.3%) spot urine samples. The median and 75th percentile of ThV were increasing (respectively) from 3.9 and 5.2 ml (10 yr), 8.2 and 10.2 ml (17 yr), 12.4 and 16.3 ml (31-40 yr) up to 14.1 and 19.9 ml (61-70 yr). The frequency of ultrasound hypoechogenicity as an early sign of autoimmune thyroiditis increased from 3.9% (28/709; 10 yr), 16.3% (66/403; 21-40 yr) and 30.3% (205/665; 41-60 yr) up to 51.0% (48/94; 61-70 yr). Positive anti-TPO level as an other sign of autoimmune thyroiditis was found in 1.6% (11/683; 7-13 yr), 7.3% (47/644; 17-30 yr) and 20.4% (257/1262; 31-70 yr). In the adults 19.0% (268/1409) positive anti-TPO were found. Among 1367 adults 6.2% (N = 85) of TSH levels were higher than 4.0 mU/l and 7.5% (N = 103) were lower than 0.2 mU/l. Among 1504 adults a total of 93 (6.1%) of nodules larger than 10 mm in diameter was found (14 in males and 75 in females). In this study the nature of nodules remained unidentified, since all subjects were referred to additional examinations. Malignant nodules were suspected in 3 females with high serum thyroglobulin level and in one additional female with occasionally found very large nodule. The estimation of urinary iodine showed a majority of values in optimal range (> 100-200 microg/l). CONCLUSIONS: Thyroid volume in about 75% examined subjects of all age groups may be considered as relatively small which is apparently due to 45 years of effective iodine prophylaxis. In spite of that the volume of remaining about 25% thyroids were apparently increased which may be presubambly explained by the effect of mainly genetic, but also environmental factors.

Adolescent↗

[Nitrate contaminated drinking water from private wells has an impact on the size and functional state of the thyroid gland in schoolchildren].

UNLABELLED: The authors compared the size of the thyroid gland, assessed by ultrasonographic examination of its volume and the functional state of the thyroid by examination of the serum level of TSH and anti-TPO antibodies in 492 pupils aged 10 and 13 years in two close agricultural areas. The areas differed above all as to the nitrate content of drinking water. In communities where the source of drinking water were private wells (nitrate area), as much as 68.1% of the water samples had a nitrate content > 50 mg/l and 46.4% samples > 100 mg/l. In communities where the source of drinking water was a water main with a known source (control area) the water samples did not exceed 50 mg/l (73.7% > 15 mg/l and 26.3% > 50 mg/l. RESULTS: Pupils from the nitrate area had a larger thyroid gland similarly as older pupils from the control area. A volume above 7 ml/m2 in the nitrate area was recorded in the group of 10-year olds in 25/99 (27.7%) and in the group of 13-year-old ones in 33/154 (21.4%), while in the control area it was in the 10-year-old ones 11/92 (11.9%) and in the 13-year-old ones 16/156 (10.2%, P < or = 0.01). In the nitrate area TSH > 5 mIU/l was recorded in 5.6% and higher anti-TPO antibodies in 2.6% pupils. In the control area the corresponding figure was 1.1% pupils, P < or = 0.01.

Adolescent↗

Possible role of genetic factors in thyroid growth rate and in the assessment of upper limit of normal thyroid volume in iodine-replete adolescents.

The objective of this study was to answer the question whether thyroid volume in adolescent siblings of similar age and a life-long sufficient iodine intake is uniform. If different, it would indicate that genetic or environmental factors unrelated to iodine intake can influence thyroid growth. We measured thyroid volume by ultrasound in: (1) 251 sibling pairs (SP) and 19 sibling triads 10 to 18 years of age. The age range of each SP was less than 24 months and of each triad less than 42 months; (2) 28 monozygotic and 13 dizygotic sets of twins 7 to 18 years of age. The sibling pairs were retrospectively divided into 3 groups irrespective of age (thyroid volume as means+/-S.E. mL/m2). Group 1: 159 pairs with low thyroid volume in both siblings; mean thyroid volume of each pair less than 5.00 mL/m2 (3.96+/-0.05, median 4.08, range 2.07-4.98); group 2: 69 pairs with high thyroid volume in both siblings; mean thyroid volume greater than 5.00 mL/m2 (5.85+/-0.12, median 5.57, range 5.03-11.02); group 3: 23 pairs with low thyroid volume in 1 sibling (3.53+/-0.15, median 3.53, range 1.71-4.91) and high thyroid volume in another (7.36+/-0.23, median 7.18, range 5.96-10.30). The majority of triads, monozygotic, and dizygotic twins resembled group 1, a few resembled group 2, and only 3 triads and 1 set of dizygotic twins resembled group 3. Among monozygotic twins, there was no pair with a strikingly discordant thyroid volume and only 1 such pair was found among dizygotic twins. In monozygotic twins, the thyroid volume was almost identical (mean difference 0.34+/-0.06 mL/m2) and significantly less (p < 0.012) than in dizygotic twins (0.9+/-0.25 mL/m2). Among 502 children of 251 sibling pairs the frequency of high thyroid volume (>5.00 mL/m2) was greater in girls (103/279, 36.9%, p < 0.01) than in boys (49/223, 22.0%). The same was true for the frequency of hypoechogenicity (42/279 or 15.0% in girls vs. 12/223 or 5.4% in boys; p < 0.01). The frequency of hypoechogenicity in both sexes of the combined groups 2 and 3 (40/186, 21.5%) was higher (p < 0.001) than in group 1 (14/316, 4.4%). All siblings examined lived in a common household with their parents, eating the same daily meals at home and school. Our results suggest that the observed differences in thyroid volume of siblings were not related to iodine intake, but to other factors, eg, genetic and environmental. It is not clear whether the children with high thyroid volume and increased frequency of hypoechogenicity should be included into the recently recommended range of normal thyroid volume for adolescents.

Adolescent↗

Recognition of a subgroup of adolescents with rapidly growing thyroids under iodine-replete conditions: seven year follow-up.

OBJECTIVE: To evaluate whether small iodine supplements decrease the incidence of adolescent thyroid hypertrophy in an iodine-sufficient population or whether such thyroid enlargement should be considered an inevitable physiological phenomenon. DESIGN: Beginning in September 1991 (after an initial examination in September 1990), 54 11-year-old children in Bardejov, Slovakia were given small iodine supplements (Thyrojod depot tablets containing 1530 microg iodide) every 2 weeks for 2 years followed by once weekly for 2 years. A second group of 63 children served as controls. In June 1995, there were still 52 treated and 60 control children in the study and these were examined; 44 treated and 48 control children remained in the study until June 1997. METHODS: In 1990, 1993, 1995, 1996 and 1997 the thyroid volume (ThV) was measured by ultrasound. Serum levels of TSH, thyroglobulin, total and free thyroxine and tri-iodothyronine and anti-thyroid peroxidase (anti-TPO), anti-thyroglobulin (anti-TG) and anti-TSH receptor (TSR) antibodies were estimated in 1990 and 1994, while only TSH, and anti-TPO and anti-TSR antibodies were measured in 1997. RESULTS: There was no difference between the groups at any interval in the serum levels of the hormones measured. Marginally increased TSH was found in two treated and two control children. Anti-TSR antibodies were negative in all children, while anti-TPO and anti-TG antibodies were found in one treated and four control children. At the age of 10 years (1990), 84% of all ThVs were less than 4 ml, indicating a previous life-long sufficient iodine intake. After the treatment was completed (June 1995), a significant difference in ThV (P < 0.04) was found between the whole treated (5.78 +/- 0.19 ml) and the whole control group (6.56 +/- 0.30 ml). However, there was already a marked difference in the 75th percentile (6.4 ml in treated vs 8.5 ml in controls) due to more rapid thyroid growth in certain children of the control group (ThV > 7.0 ml in 6/52 treated children vs 24/60 controls; P < 0.01). Since such differences were much higher in 1997, the children in each group whose ThV was in the range of the upper 25% in 1997 were retrospectively evaluated as arbitrary separate subgroups in all the time intervals and compared with the remaining 75% of children who showed moderate thyroid growth rate. Two years after the termination of treatment (June 1997), excessive thyroid growth continued in the upper quarter of 12 controls with the highest ThV (13.60 +/- 0.40 ml or 7.60 +/- 0.29 ml/m2; 12/12 with ThV > 11.0 ml), and a similar subgroup now also appeared in 11 previously treated children (10.79 +/- 0.51 ml or 6.19 +/- 0.30 ml/m2; 5/11 with ThV > 11.0 ml). At the same time, ThV in the remaining 75% of both control (8.12 +/- 0.38 ml or 4.82 +/- 0.17 ml/m2; 3/36 with ThV > 11.0 ml) and treated (7.20 +/- 0.30 ml or 4.39 +/- 0.17 ml/m2; 0/33 with ThV > 11.0 ml) children was significantly less (P < 0.01 to P < 0.001) than that in the appropriate rapidly growing subgroups. During the whole observation period (1990-1997), no difference was found between treated and control subgroups with moderate thyroid growth. CONCLUSIONS: Since iodine intake in Slovakia has been adequate for decades and sporadic iodine deficiency is highly unlikely, the observed excessive thyroid growth in certain adolescents may result from causes other than simple iodine deficiency (e.g. hereditary), which are nevertheless ameliorated by small iodine supplements. The question remains whether such a subgroup with rapidly growing thyroids should be included in the range of normal thyroid volumes in adolescents.

Adolescent↗

Increased thyroid volume and prevalence of thyroid disorders in an area heavily polluted by polychlorinated biphenyls.

OBJECTIVE: To evaluate whether long-term exposure to heavy environmental pollution with polychlorinated biphenyls (PCBs) could result in impairment of thyroid status as evaluated by an epidemiological field survey. METHODS: Thyroid volume (ThV) was measured by ultrasound in 238 employees of a factory (EMP) which previously produced PCBs and 454 adolescents from the surrounding area polluted by PCBs. Controls (C) were 572 adults and 965 adolescents from much less polluted areas. In the 238 EMP and various numbers (shown in parentheses) of adult C the levels of thyroid-stimulating hormone (TSH) (n = 498), thyroxine (n = 498), thyroglobulin (n = 278) and thyroid antibodies (anti-peroxidase (TPO Ab), n= 517; anti-thyroglobulin (Tg Ab), n=455; anti-TSH receptor (TSHR Ab), n=238) were estimated in serum, while only TSH and TPO Ab were measured in 269 and 171 adolescents from polluted and control areas respectively. In several subjects in whom thyroid disease was suspected, total tri-iodothyronine or free thyroxine and tri-iodothyronine were measured. In a total of 362 adults and adolescents the urinary iodine was estimated. RESULTS: Using the Mann-Whitney test, ThV in EMP (mean+/-S.E. = 18.85+/-0.69 ml, median= 17.3 ml, upper quartile=22.9 ml, n=238) was significantly higher (P< 0.001) than that in C (13.47+/-0.48 ml, 11.5 ml, 15.3 ml, n = 486 respectively). Similarly, ThV in adolescents from the polluted area (9.37+/-0.17 ml, 8.9 ml, 11.0 ml, n = 454 respectively) was significantly higher (P< 0.001) than that in C (8.07+/-0.10 ml, 7.6 ml, 9.6 ml, n = 965 respectively). In adults, a significantly increased prevalence of TPO Ab (P<0.05) was found (using the chi-square test) in EMP women of all ages (54/190) vs C women (70/282), in EMP women aged 31-50 years (40/117 vs 70/282 respectively) and those aged 41- 50 years (28/77 vs 54/215 respectively). Compared with C, there was also a higher prevalence of Tg Ab in EMP women aged 31-60 years (36/169 vs 50/342 respectively) and of TSHR Ab (P< 0.001) in the group of EMP men and women (25/238) vs sex- and age-matched C (6/238). No difference between EMP and C was found in the level of thyroxine (mean+/-S.D = 116.1+/-31.2 nmol/l, n = 238 vs 112.2+/-37.0 nmol/l, n = 460 respectively), TSH in the range 0.1-4.5 mU/l(1.56+/-0.86 mUl/l, n = 219 vs 1.51+/-0.84 mU/l, n = 460 respectively), prevalence of TSH >4.5 (14/238 vs 28/498 respectively) and <0.1 mU/l(5/238 vs 10/498 respectively). The prevalence of individuals without any defined clinical or laboratory signs of thyroid disorders among EMP who had worked in the factory for 21-35 years (43/128, 33.6%) was significantly lower than that in twice as many matched C (118/256, 46.1%, P< 0.025) or in EMP who had worked for only 11-20 years (36/73, 49.3%, P< 0.05). In adolescents, no difference was found in the prevalence of TPO Ab or TSH >4.5 mU/l between the polluted (17/269, 6.3%, and 2/243, 0.8% respectively) and C areas (15/171, 8.5% and 4/140, 2.8% respectively). The median values of urinary iodine were in the optimal range (microg per dl/number of cases) and about the same in polluted (12.6/90 and 11.4/55) and C areas (14.1/80, 13.2/82 and 13.4/55). CONCLUSIONS: Since iodine intake in Slovakia is considered sufficient as a result of 45 years of well-monitored iodine prophylaxis, the increased ThVand prevalence of thyroid disorders in the polluted areas presumably results from long-term exposure to toxic substances rather than from a difference in life-long iodine intake. The increased prevalence of some thyroid antibodies may be related to the known immunomodulatory effects of PCBs.

Adolescent↗

[Ultrasonographic diagnosis of parathyroid glands].

Enlarged parathyroid glands are, if their localization is typical behind the thyroid gland, during basic USG examination with 5 MHz to 10 MHz using a linear probe, hypoechogenic or anechogenic, larger than 0.5 cm, oval in shape, elongated in a cranoiocaudal direction, separated from the thyroid gland. During swallowing they move upwards. Such a picture may be simulated also by enlarged lymph nodes, sympathetic ganglia a cranked vessel or oesophagus. By using coloured Doppler sonography in the algorithm of examinations the percentage of falsely positive findings may decline. Between 90 degrees and 270 degrees the vascular arch is sought which is formed by the branch of the a. thyroidea inferior. This vascular arch is found only when the parathyroid is involved, even when it is located in the parenchyma of the thyroid gland.

Humans↗

Decreased blood level of beta 2-microglobulin in the employees of a factory which produced polychlorinated biphenyls.

Under the project of evaluating the health status of the employees of CHEMKO factory (East Slovakia) which produced PCBs between 1955 and 1985, the level of beta 2-microglobulin (beta 2-m) was measured in the serum of 242 subjects from CHEMKO (Group A) and two control groups from much less polluted areas: 1,277 females from a small mountainous village (Group B), 2,179 adults from the area of a large city of Kosice (Group C). The level of thymidine kinase (TK) was measured in the groups A and B only. In addition, age-matched groups of 155 women each from all areas were evaluated. In both the whole group and the age-matched group from CHEMKO the level of beta 2-m was significantly lower (P < 0.001) than that in the respective control groups, while no difference was found in the level of TK. In conclusion, it is suggested that the decrease of beta 2-m in CHEMKO employees might be related to the immunotoxic effects of organochlorines.

Adult↗

[Treatment of autonomous thyroid gland nodules using percutaneous injections of ethanol under ultrasonography control--initial experience].

The authors treated nine women with autonomous adenomas of the thyroid gland by repeated ethanol injections under ultrasonographic control. In all patients clinical and laboratory characteristics of hyperthyroidism were present. After treatment is seven patients euthyroidism was induced, in two patients subclinical hypothyroidism which persisted also during the 6-month follow-up period. In all patients ultrasonographic changes in the nodes were recorded: a reduced echogenity the development of "halo"--hypoechogenic outlines--a change of the shape and on average a 37% reduction of the volume. Treatment was feasible also under out-patient conditions: it was well tolerated by the patients, undesirable effects were not serious and only transient and receded spontaneously.

Adenoma↗

[Organic chlorinated pollutants and the thyroid gland].

This review presents the definition of main groups of organic chlorinated pollutants (polychlorinated biphenyls, dibenzodioxines, dibenzofurans, hexachlorobenzene, hexachlorocyclohexane, DDT etc.). Moreover, the similarity of their effects with those of steroid and thyroid hormones either via steroid/thyroid receptor or via specific Ah-receptor is described. Special attention is paid to their effects on the thyroid gland in experimental conditions as well as on professionally and nonprofessionally exposed population. Finally, own preliminary data are presented which were obtained by the examination of 249 employees of the factory Chemko producing polychlorinated biphenyls in 1955-85 as compared with control groups of 218 adults from Moldava, Trebisov and Kosice and 278 women from Orava. In women from Chemko the frequency of thyroid volumes (by ultrasound) over 22,1 ml was 40/202, while that from Moldava was 16/170 (p < 0.001). In the employees of Chemko also significantly higher frequency of thyroid antibodies anti-thyroperoxidase, anti-thyroglobulin and anti-TST-receptor was found.

Animals↗

[The present and future of providing iodinated salt to the population].

Iodine content was estimated in 401 samples of table salt (out of which 365 from the distribution network and 101 from households). The values of 85.5% of samples from the distribution network were in normal range (i.e. 25 +/- 10 mg KI/kg) while 9.8% of samples showed the values below that range. The samples from households showed lower values, only 70.2% being in normal range and 28.6% below that which was 3 times more than in those from the distribution network. Such difference may be explained by the loss of iodine from the salt during the storage due to the effects of moisture, temperature and light. However, less satisfactory iodine levels were found in the salt imported from Poland (9 of 28 samples below the normal range, i.e. 32%), Austria (5 from 9 samples below normal range, i.e. 55%) and in the sea salt (7 from 11 samples below normal range, i.e. 63%), while satisfactory values were found in the salt from Germany (all 5 samples examined were in normal range). From 1126 samples from the distribution network examined during 1981-1986 were 63.6 in normal range, while 88.4% out of 612 samples examined during the period 1987-1990 hat their iodine levels in normal range. Present data show satisfactory iodine content in the salt which justifies the assumption of satisfactory iodine intake in the population of Slovakia. (Tab. 2, Ref. 6.).

Humans↗

Thyroid volume and urinary iodine in school children and adolescents in Slovakia after 40 years of iodine prophylaxis.

The thyroid volume (by ultrasonographic volumetry) was estimated in 4,254 schoolchildren and adolescents 6-18 years of age from 12 districts of Slovakia and urinary iodine (by dry alkaline ashing followed by spectrophotometry) in 1,174 spot urine samples. No differences in thyroid volume or in iodine excretion between individual districts were found. Similarly, no differences in thyroid volume between sexes were found up to the age of 14 years, however, thereafter, such volumes were considerably higher in boys. When comparing our cummulated data with those reported by others for a population with optimal iodine intake, it was found: 1. the medians for most of the examined age groups were slightly higher, 2. the percentage of values which were higher than 97 percentiles of normal population was 3.01 for the age of 6-14 years, while that for the age of 15-18 years was 9.04. Only 35.9% of all values of urinary iodine were in the optimal range (i.e. 10-20 mud/dl), while 56.1 were less than 10 micrograms/dl and 15.9% less than 5 micrograms/dl, the remaining 8.0% over 20 micrograms/dl. In spite of long-term iodine prophylaxis (since 1949), the intake of iodine apparently is still not satisfactory, since a considerable amount of individuals appeared to be iodine deficient on the day of examination. Iodine intake, however, may be marginally sufficient up to the age of about 13-14 years, while later a higher number of enlarged thyroids was found which may be classified as goitre endemy grade I.

Adolescent↗

[Cytologic picture of medullary carcinoma of the thyroid gland].

The authors present cytological and clinical features of six cases of medullary carcinoma of the thyroid. They are quoting a review of the literature about the cytological picture of medullary carcinoma of the thyroid and they draw attention to the advances of immunocytology.

Adult↗

[Pregnancy and the thyroid gland].

The authors assessed, using ultrasonography, the volume of the thyroid gland in 93 women 4 days and then 3 and 6 months after parturition. The results were compared with a control group of women who were not delivered of a baby during the last 12 months. Women 4 days after delivery had on average a thyroid gland by 3.1 ml larger (P < 0.01) than controls. Three months after delivery there was still a significant difference in the volume between women who had a baby and the control group (P < 0.05). Goitre (volume larger than 22 ml) was observed after childbirth in 11 (11.8%), where as in the control group only in 3 women (5.3%). The authors analyze the causes which may bring about enlargement of the thyroid gland during pregnancy.

Adolescent↗