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Elzbieta Nikisch

Publications and source records attributed to Elzbieta Nikisch.

6 recordsLinked to original sources

[Adrenal tumours in a selected 10-years surgical material].

UNLABELLED: The aim of the study was to analyze the number and proportions of different adrenal tumours resected during the last 10 years in our centre. Besides, we seek correlations between the size of tumours and the age and body mass indexes (BMI) of the examined patients. MATERIAL AND METHODS: The tumours where measured on CT and MRI before surgery, and on pathological examination after resection. The examined group consisted of 69 patients, 22 males and 47 females, mean age 50.51 +/- 12.26 yrs. In 45 (65.22%) cases the right adrenal was affected, in 21 (30.43%)--the left, in 3 (4.35%)--both. RESULTS: 12 adrenocortical cancers, 20 phaeochromocytomas, 9 cortisol-secreting adenomas, 4 aldosteronomas, 18 hormonally inactive adenomas, 6 miscellaneous tumours were found. Malignant tumours where significantly larger than benign (12.20 +/- 6.81 vs 6.71 +/- 5.62 cm, p < 0.005). We observed no correlation between the age and preoperative tumor size (p = 0.1756), between the age and pathological tumor size (p = 0.3601), and between BMI and the preoperative and histopathologic size (p = 0.4204, and p = 0.6478, respectively). CONCLUSIONS: The most common tumour was phaeochromocytoma. Most tumours where found in the right adrenal. The malignant tumours where larger than benign ones. No correlations between age and BMI, and tumour size where demonstrated.

Adrenal Gland Neoplasms↗

[Subclinical hypothyroidism influences ventricular repolarization measured by QTc interval].

UNLABELLED: Thyroid disorders exert a major effect on cardiac function and on ECG. Few studies examined the effect of thyroid hormones on ventricular repolarization, measured by corrected QT interval (QTc). Prolonged QTc is associated with increased risk of arrythmias and cardiac mortality. The aim of this study was to examine the influence of subclinical hypothyroidism on ventricular repolarization measured by corrected QTc in standard 12-lead electrocardiogram. The examined group consisted of 32 patients with hypothyroidism, the controls were 39 healthy individuals. The mean corrected QTc was 0.434, SD +/- 0.0296 seconds and 0.414, SD +/- 0.0208 in the examined groups and in controls, respectively (p < 0.01). QTc did not correlate with free thyroxine concentrations (p = 0.4064). In the group with subclinical hypothyroidism we did not observe a significant difference in heart rate (74.3 vs. 73.7, SD +/- 13.58, NS). CONCLUSION: Corrected QT intervals were significantly prolonged in patients with subclinical hypothyroidism.

Arrhythmias, Cardiac↗

The Allan factor: a new model of mathematical interpretation of heart rate variability in stable coronary artery disease. Preliminary results.

INTRODUCTION: The current analysis of heart rate variability (HRV) is one of the noninvasive methods of cardiovascular system assessment. The quantitative characteristics of the RR interval sequence and its dynamics are still under development as regards measurement techniques and development of new HRV interpretation models. The practical clinical application of the standard measurements is still insufficient and improvement of sensitivity and specificity of HRV parameters is needed. AIM: To assess a novel mathematical model of HRV interpretation and compare it with standard HRV measurements for patients with stable coronary artery disease (CAD), based on the virtual instrumentation technique. METHODS: The study group consisted of 24 patients with CAD confirmed by coronary angiography and a control group of 15 volunteers. Short-term electrocardiographic signals were recorded by a computer system and analysed for estimation of several HRV descriptors in time, frequency and combined time-frequency domains. Calculations included standard HRV measures and the Allan factor, a parameter based on the Haar wavelet transform. RESULTS: None of the investigated measurements derived from power spectral analysis has shown a statistically significant difference between healthy controls and patients with CAD, with the exception of rMSSD (Wilcoxon test: supine position *p=0.0018, erect position p=0.0708; discriminant function analysis: supine position *p=0.0069, erect position p=0.7851). Compared with standard HRV variables, the Allan factor better discriminated patients with CAD from healthy subjects (Wilcoxon test: supine position *p=0.0172, erect position *p=0.0001; discriminant function analysis: supine position p=0.8962, erect position *p=0.0200). CONCLUSIONS: The observations related to the novel parameter based on combined time and frequency domains may provide better quantitative measurements of heart rate variability in patients with coronary artery disease and require further investigations to assess their sensitivity and specificity.

Adult↗

[Prolonged ventricular repolarization measured by QTc interval in hyperthyroidism].

UNLABELLED: Thyroid dysfunction exerts an effect on cardiac function and on an electrocardiographic curve. Few studies analyzed the influence of thyroid hormones on heart repolarization. Heart repolarization is assessed in every-day-practice with corrected QT interval in ECG. Prolonged QTc is associated with increased risk for heart rythm disturbances and mortality. The aim of this study was to assess the effect of hyperthyroidism on heart repolarization, measured with QT corrected by Bazett's formula. MATERIAL AND METHODS: The study group included 68 hyperthyroid patients (30 males, 38 females, mean age 39+/-10 yrs) and the controls were 39 in age and sex matched healthy subjects. TSH and free thyroxine were assessed. The QTc was measured in a standard 12 lead ECG. RESULTS: In the study group the heart rhythm was faster when compared to controls (91.8 vs.73.7, SD+/-16.11, p<0.0001). The mean corrected QT (QTc) was 0.430, SD+/-0.0273 sec., in controls respectively: 0.414, SD+/-0.0208 sec., p<0.01. QTc did not correlate with free thyroxine concentrations (p=0.2785). CONCLUSIONS: Corrected QT intervals were significantly prolonged in hyperthyroid patients, although they did not reach high values.

Action Potentials↗

[Depression and anxiety in patients with adrenal tumor incidentally found on abdominal imaging performed for other indications].

OBJECTIVE: The aim of this study was to assess the level of anxiety and depression in patients with non-secreting adrenal incidentaloma. MATERIAL AND METHODS: The study group comprised 26 patients (16 women, 10 men, mean age 45, SD 11 yrs). The Polish version of the State-Trait Anxiety Inventory was used to assess anxiety level, and the Beck Depression Inventory was used to measure depression symptoms. RESULTS: The anxiety level was increased (median: 45.6 for state, and 46.5 for trait), and mild depression was present, with 13.5 scores on Beck's scale. CONCLUSIONS: Adrenal incidentaloma is associated with increased anxiety and depression.

Adrenal Gland Neoplasms↗

[Insulin resistance assessed with HOMA-IR in hyperthyroid patients].

UNLABELLED: Hyperthyroidism may influence sensitivity to insulin. The aim of study was to assess insulin resistance in hyperthyroid patients in correlation with the plasma free thyroxine (FT4) and thyreotropin (TSH) concentrations. MATERIAL AND METHODS: The study group consisted of 15 hyperthyroid patients (11 females, 4 males, mean age 50, 6 +/- 12, 36 yrs.). The controls were 17 healthy individuals (6 females, 11 males, mean age 55, 12 +/- 14, 17 yrs.). In the study group the mean FT4 was 33.1 +/- 20.1 pmol/l, TSH 0.034 +/- 0.066 pmol/l, glucose 5.00 +/- 0.56 mmol/l, insulin 7.19 +/- 3.59 microU/mL. In the controls respectively: 16.2 +/- 1.8 pmol/l, 1.24 +/- 1.07 pmol/l, 5.04 +/- 0.62 mmol/l, 7.24 +/- 4.06 microU/mL. Insulin resistance was calculated with HOMA-IR model, and the results were in the study group: mean 1.63 +/- 0.85, range from 0.46 to 3.67, median 1.38; in the controls respectively: 1.69 +/- 1.08, range from 0.36 to 4.47, median 1.42. RESULTS: Insulin resistance did not differ significantly between the groups (p=0.8860). FT4 and TSH did not influence insulin resistance in either group, the correlations were insignificant: for FT4 and for TSH p=0.5100 and p=0.5601 in the study group, and p=0.172 and p=0.4509 in the controls, respectively. CONCLUSION: Hyperthyroidism did not influence insulin resistance assessed with HOMA-IR model in vivo.

Body Mass Index↗