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Biomedical subjects

V Melenovský

Publications and source records attributed to V Melenovský.

6 recordsLinked to original sources

Second derivative of the finger arterial pressure waveform: an insight into dynamics of the peripheral arterial pressure pulse.

The study investigated second derivative of the finger arterial pressure waveform (SDFAP) in 120 healthy middle-aged subjects and in 24 subjects with essential hypertension. SDFAP consists of 5 sequential waves 'a'-'e'. Their normalized magnitudes (B/A, C/A, D/A, and E/A) were calculated. In multivariate regression analysis, B/A and C/A correlated only with age. D/A independently correlated with age, heart period, mean blood pressure (MBP), body height, and gender. E/A independently correlated with age and MBP. D/A and E/A were higher (0.42+/-0.16 vs. 0.33+/-0.14, p = 0.05 and 0.63+/-0.15 vs. 0.45+/-0.14, p < 0.001), while B/A and C/A were lower (1.04+/-0.16 vs. 1.20+/-0.17, p = 0.002 and 0.09+/-0.15 vs. 0.26+/-0.20, p = 0.001) in hypertensives compared to sex- and age-matched controls. After the adjustment for MBP, heart period, and body mass index (ANCOVA), independent discriminative power was preserved only for indices B/A and C/A (p = 0.001 and 0.021, respectively). Therefore, B/A and C/A provide additional information about simple clinical characteristics and might reflect the structural alteration of the arterial wall in hypertensive subjects.

Adult↗

[Heart rate turbulence--a new ECG predictor for risk of sudden death].

Heart Rate Turbulence (HRT) is a newly described physiological chronotropic response of sinus rhythm following a single ventricular premature beat (VPB) consisting of early acceleration and later deceleration of heart rate. Using two large independent cohorts of postinfarction patients, the absence of HRT was retrospectively validated to be a potent multivariate risk predictor, stronger than a number of currently available risk stratifiers. Although exact pathophysiological mechanism of HRT remains speculative, it is now believed that HRT arises from the haemodynamic changes and baroreceptor reflexes that occur following a VPB. Therefore, HRT descriptors (Turbulence Onset and Turbulence Slope) may serve as very reasonable, Holter--based surrogates of baroreflex sensitivity available in clinical practice. The aim of this review is to summarise the current knowledge on pathophysiological mechanisms of HRT and to discuss practical problem of its detection.

Death, Sudden, Cardiac↗

Folate supplementation prevents plasma homocysteine increase after fenofibrate therapy.

BACKGROUND: Homocysteine is associated with an increased risk of atherosclerosis. The administration of fibrates has been reported to significantly increase plasma homocysteine levels, a potentially adverse effect of fibrates. We investigated the hypothesis that concomitant treatment with fenofibrate and folic acid leads to a smaller increase in plasma total homocysteine levels than treatment with fenofibrate alone. METHODS: A randomized, open-label study compared the effect of micronized fenofibrate (200 mg daily) alone versus fenofibrate plus folic acid (10 mg every other day) on plasma homocysteine levels. Twenty-two patients with mixed hyperlipidemia participated. The 9-wk treatment period was preceded by a 4-wk wash-out period without hypolipidemic drugs. RESULTS: In patients treated with fenofibrate only, plasma homocysteine levels increased by 6.85 +/- 5.23 micromol/L (from 12.27 +/- 3.15 to 19.13 +/- 7.20 micromol/L); in patients treated with fenofibrate and folic acid, plasma homocysteine levels increased by 2.01 +/- 2.88 micromol/L (from 10.14 +/- 2.32 to 12.15 +/- 3.08 micromol/L). The difference in the homocysteine increase between the two groups was statistically significant at P = 0.014. CONCLUSIONS: Folic acid supplementation in patients treated with fenofibrate significantly reduced the increase in plasma homocysteine levels. More studies are needed to clarify whether amelioration of this side effect increases the clinical benefit of fibrates.

Arteriosclerosis↗

The changes of IGF binding proteins after rhGH administration to patients totally dependent on parenteral nutrition.

The objective was to study the effect of recombinant human growth hormone (rhGH) administration to patients with chronic malnutrition maintained on total parenteral nutrition (TPN) on the levels of insulin-like growth factor-I (IGF-I) and IGF binding proteins (IGFBPs) during a double-blind trial. After 1 week of TPN the patients were randomized into group I (placebo) or group II (rhGH). Samples were collected on the first day (start of the TPN) to measure basal values, the seventh day to study the effect of TPN and the 10th, 14th and 21st days to evaluate the rhGH effect. Basal laboratory evaluation, nutritional status and glucose tolerance were assessed using standard laboratory techniques. Radioimmunoassays were used to analyse IGF-I, free IGF-I (fIGF-I) and IGFBP1-3. Electrophoresis with Western ligand blotting and Western immunoblotting was applied to find the pattern of IGFBPs. TPN had no effect on the circulating IGF-I concentration and the pattern of IGFBPs present in the studied groups of patients. The rhGH administration led to significant increases of IGF-I, total IGFBP-3, glycosylated IGFBP-3 (39, 42 kDa) and the 29 kDa fragment of IGFBP-3 and the decrease of IGFBP-2 during the trial (P<0.05). The mean levels of IGFBP-1, fIGF-I and the parameters of nutritional status in group II during the trial were not significantly influenced by rhGH. However, it has been found that IGFBP-1 and fIGF-I levels were correlated with the levels of the weekly nitrogen balance of each patient in group II at the end of the trial. In spite of the significant changes of IGF-I, IGFBP-2, total IGFBP-3 and IGFBP-3 (29 kDa proteolytic fragment) after rhGH administration to patients with malnutrition, maintained on parenteral nutrition, the increase of nitrogen balance was seen only in patients who decreased their IGFBP-1 and increased bioavailable IGF-I as reflected by measurement of fIGF-I. The levels of IGFBP-1 may provide a useful marker of IGF-I bioavailability in monitoring the efficiency of the rhGH therapy in malnourished patients.

Adult↗

[Function and dysfunction of the endothelium].

Endothelium is a multi-functional barrier separating blood from interstitium. It plays a role in coagulation, inflammation, angiogenesis and it has vasomotor functions. The endothelial dysfunction can be considered as an initial stage of atherosclerosis. Using morphological and biochemical methods it is possible to study the influence of cardiovascular risk factors on the vessels and the effect of therapeutic interventions. A short review of endothelial functions, endothelial dysfunction and its quantification methods is presented in this article.

Blood Coagulation↗

Cross-spectral analysis of heart rate and blood pressure modulations.

The cross-spectral analysis of heart rate (HR) and blood pressure (BP) variabilities provides "amplitude" and "phase" related measures. Compared to the amplitude measure, that is the baroreflex gain, the phase related measure characterizing the time lag between HR and BP oscillations has been studied to a much lesser extent. A population of 103 patients (73 men, 30 women, aged 53 +/- 12, range 20-82 years) referred for the management of coronary artery disease and/or hypertension were studied. In each subject, electrocardiogram and BP recordings were obtained in the supine and sitting positions of 5 minutes of rest (spontaneous respiration), 3 minutes of controlled respiration at 0.1 Hz (slow-controlled respiration), and 3 minutes of controlled respiration at 0.33 Hz (fast-controlled respiration). The frequency of maximum coherence (above the arbitrary threshold of 0.5) of BP and RR interval variabilities was searched between 0.033-0.133 Hz and 0.200-0.400 Hz to obtain baroreflex gain and phase shift in low and high frequency bands, respectively. Mean phase shifts of -79.1 and -67.0 degrees (-2.4 and -2.1 s) were found during slow-controlled respiration in the supine and sitting body positions, respectively. The mean phase shift between systolic BP and RR interval in the low frequency band was found between 83 and -109 degrees for body positions and respiration regimes. The actual baroreflex related time lag between systolic BP and RR variations was found between 3.5 and 5.1 seconds. The study concludes that the appropriate, and not always easy, selection of the frequency of maximum coherence between BP and HR oscillation is crucial for an accurate cross-spectral assessment of baroreflex sensitivity.

Adult↗