Although the importance of office prehypertension/high normal blood pressure (BP) has been well documented, the significance of ambulatory prehypertension (AmbPreHT) has not been determined. We analyzed markers of target organ damage and hemodynamics in adolescents with AmbPreHT in comparison with hypertensive and normotensive subjects. Out of 304 white patients aged 15.0±2.5 years with office hypertension, 30 children had AmbPreHT and were compared with 66 normotensive healthy children and 92 children with true hypertension (elevated office, ambulatory, and central BP), 22 had ambulatory hypertension (AmbHT), and 70 had severe AmbHT (SevAmbHT). Stroke volume and cardiac output were greater in AmbPreHT compared with patients with normotension but did not differ between AmbPreHT, AmbHT, and SevAmbHT. Similarly, AmbPreHT, AmbHT, and SevAmbHT had similar total peripheral resistance, lower than patients with normotension ( P <0.05). Central systolic BP was higher in patients with AmbPreHT, AmbHT, and SevAmbHT compared with normotensives ( P <0.01). In all 3 groups, the carotid intima-media thickness Z scores were significantly higher than in normotensive ( P <0.001). AmbPreHT and AmbHT patients had higher left ventricular mass index and prevalence of left ventricular hypertrophy compared with normotensive but lower compared with SevAmbHT ( P <0.001). Pulse wave velocity Z scores were increased in patients with AmbPreHT, AmbHT, and SevAmbHT compared with patients with normotension ( P <0.01). Multiple regression analysis showed that body mass index Z score, central systolic BP, and uric acid levels were significant independent predictors of left ventricular mass index. In conclusion, patients with AmbPreHT presented similar cardiovascular adaptations to those observed in patients with hypertensive and may be at risk of developing cardiovascular events.
Background Currently used pediatric kidney length normative values are based on small single-center studies, do not include kidney function assessment, and focus mostly on newborns and infants. We aimed to develop ultrasound-based kidney length normative values derived from a large group of European Caucasian children with normal kidney function. Methods Out of 1,782 children aged 0–19 years, 1,758 individuals with no present or past kidney disease and normal estimated glomerular filtration rate had sonographic assessment of kidney length. The results were correlated with anthropometric parameters and estimated glomerular filtration rate. Kidney length was correlated with age, height, body surface area, and body mass index. Height-related kidney length curves and table were generated using the LMS method. Multivariate regression analysis with collinearity checks was used to evaluate kidney length predictors. Results There was no significant difference in kidney size in relation to height between boys and girls. We found significant (p < 0.001), but clinically unimportant (Cohen’s D effect size = 0.04 and 0.06) differences between prone vs. supine position (mean paired difference = 0.64 mm, 95% CI = 0.49–0.77) and left vs. right kidneys (mean paired difference = 1.03 mm, 95% CI = 0.83–1.21), respectively. For kidney length prediction, the highest coefficient correlation was observed with height (adjusted R2 = 0.87, p < 0.0001). Conclusions We present height-related LMS-percentile curves and tables of kidney length which may serve as normative values for kidney length in children from birth to 19 years of age. The most significant predictor of kidney length was statural height. Graphic Abstract
BACKGROUND: Localization and histopathological examination of sentinel lymph node is a standard of melanoma treatment. The first stage of identification of the SLN is the preoperative lymphoscintigraphy. The aim of this study was to assess and
Background:Primary hypertension may lead to early vascular ageing. We aimed to evaluate differences between expected vascular age based on pulse wave velocity (PWV)/carotid intima-media thickness (cIMT) and actual chronological age (CHA) in adolescents with primary hypertension.Methods:Three hundred and fifty-two children (median age of 15.5 years) with office hypertension and 64 normotensive healthy children of the same age underwent anthropometry, office and ambulatory blood pressure (BP), left ventricular mass index, cIMT, PWV, pulse wave analysis and biochemistry measurements. Vascular age was calculated using pooled pediatric and adult normative PWV and cIMT data. The difference between vascular age and CHA was calculated in relation to the 90th percentile for PWV (PWVAgeDiff90) and the 95th percentile for cIMT (cIMTAgeDiff95).Results:One hundred and sixty-six patients had white-coat hypertension (WCH), 32 had ambulatory prehypertension (AmbPreHT), 55 had isolated systolic hypertension with normal central SBP (ISH+cSBPn), 99 had elevated office, ambulatory and cSBP (true hypertension, tHT). The differences between vascular age (both PWV and cIMT based) and CHA were significantly higher in AmbPreHT and tHT compared with normotension, WCH and ISH+cSBPn. Median PWVAgeDidff90 was −3.2, −1.2, −2.1, +0.8 and +0.3 years in normotension, WCH, ISH+cSBPn, AmbPreHT and tHT, respectively. Median cIMTAgeDiff95 was −8.0, −6.3, −6.8, −3.8 and −4.3 years in normotension, WCH, ISH+cSBPn, AmbPreHT and tHT, respectively. Significant predictors of PWVAge90Diff were the DBP and serum cholesterol, whereas cSBP and augmentation index were significant predictors of cIMTAgeDiff95.Conclusion:Children with AmbPreHT and tHT show accelerated vascular age compared with their normotensive peers.
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