220 research outputs found

    Reduced physical activity level and cardiorespiratory fitness in children with chronic diseases

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    We aimed to compare physical activity level and cardiorespiratory fitness in children with different chronic diseases, such as type 1 diabetes mellitus (T1DM), obesity (OB) and juvenile idiopathic arthritis (JIA), with healthy controls (HC). We performed a cross-sectional study including 209 children: OB: n = 45, T1DM: n = 48, JIA: n = 31, and HC: n = 85. Physical activity level was assessed by accelerometer and cardiorespiratory fitness by a treadmill test. ANOVA, linear regressions and Pearson correlations were used. Children with chronic diseases had reduced total daily physical activity counts (T1DM 497 ± 54cpm, p = 0.003; JIA 518 ± 28, p < 0.001, OB 590 ± 25, p = 0.003) and cardiorespiratory fitness (JIA 39.3 ± 1.7, p = 0.001, OB 41.7 ± 1.2, p = 0.020) compared to HC (668 ± 35cpm; 45.3 ± 0.9mlkg−1 min−1, respectively). Only 60.4% of HC, 51.6% of OB, 38.1% of JIA and 38.5% of T1DM children met the recommended daily 60min of moderate-to-vigorous physical activity. Low cardiorespiratory fitness was associated with female gender and low daily PA. Conclusion: Children with chronic diseases had reduced physical activity and cardiorespiratory fitness. As the benefits of PA on health have been well demonstrated during growth, it should be encouraged in those children to prevent a reduction of cardiorespiratory fitness and the development of comorbiditie

    Impaired endothelial and smooth muscle functions and arterial stiffness appear before puberty in obese children and are associated with elevated ambulatory blood pressure

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    Aims To determine whether impaired brachial endothelial (flow-mediated dilation, FMD) and smooth muscle function (nitroglycerin-mediated dilation, NTGMD), and remodelling of the common carotid artery (CCA) develop before puberty in obese children. Methods and results Arterial intima-media thickness (IMT), FMD and NTGMD were measured by high-resolution ultrasound in 48 obese and 23 lean pre-pubertal children (8.8 ± 1.5 years old). We assessed central pulse pressure, incremental elastic modulus (Einc), casual and ambulatory systolic (SBP) and diastolic blood pressure (DBP), and body fatness by DXA. Obese children had significantly lower FMD (4.5 ± 4.0 vs. 8.3 ± 1.7%), NTGMD (19.0 ± 9.0 vs. 25.8 ± 6.1%), and increased Einc (13.9 ± 5.2 vs. 10.4 ± 5.2 mmHg/102), ambulatory SBP (121.3 ± 12.6 vs. 106.6 ± 7.1, mmHg), and DBP (69.1 ± 5.7 vs. 63.7 ± 4.5) than lean subjects, whereas IMT was not augmented. Ambulatory systolic hypertension was present in 47% of obese subjects. FMD, NTGMD, and Einc were correlated with body fatness, body mass index, and blood pressure (BP). Conclusion Impaired endothelial and smooth muscle functions and altered wall material develop before puberty in obese children, however remodelling of the CCA is not yet present. Arterial dysfunction may be considered as the first marker of atherosclerosis and is associated with elevated BP. Ambulatory blood pressure monitoring may be a potential tool to improve risk stratification in obese childre

    Adapting the "Chester step test" to predict peak oxygen uptake in children.

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    Maximal exercise testing may be difficult to perform in clinical practice, especially in obese children who have low cardiorespiratory fitness and exercise tolerance. We aimed to elaborate a model predicting peak oxygen consumption (VO2) in lean and obese children with use of the submaximal Chester step test. We performed a maximal step test, which consisted of 2-minute stages with increasing intensity to exhaustion, in 169 lean and obese children (age range: 7-16 years). VO2 was measured with indirect calorimetry. A statistical Tobit model was used to predict VO2 from age, gender, body mass index (BMI) z-score and intensity levels. Estimated VO2peak was then determined from the heart rate-VO2 linear relationship extrapolated to maximal heart rate (220 minus age, in beats.min-1). VO2 (ml/kg/min) can be predicted using the following equation: VO2 = 22.82 - [0.68*BMI z-score] - [0.46*age (years)] - [0.93*gender (male = 0; female = 1)] + [4.07*intensity level (stage 1, 2, 3 etc.)] - [0.24*BMI z-score *intensity level] - [0.34*gender*intensity level]. VO2 was lower in participants with high BMI z-scores and in female subjects. The Chester step test can assess cardiorespiratory fitness in lean and obese children in clinical settings. Our adapted equation allows the Chester step test to be used to estimate peak aerobic capacity in children

    Weight-bearing bones are more sensitive to physical exercise in boys than in girls during pre- and early puberty: a cross-sectional study

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    Summary: We carried out a cross-section study of the sex-specific relationship between bone mineral content and physical activity at sites with different loading in pre- and early pubertal girls and boys. There was significant sensitivity of bone mineral content of the hip to physical exercise in boys, but not in girls. Background: Since little is known whether there are sex differences in sensitivity of bone to loading, we investigated sex differences in the cross-sectional association between measures of physical activity (PA) and bone mass and size in pre- and early pubertal children of both sexes. Methods: We measured bone mineral content/density (BMC/BMD) and fat-free mass (FFM) in 269 6- to 13-year-old children from randomly selected schools by dual-energy X-ray absorptiometry. Physical activity (PA) was measured by accelerometers and lower extremity strength by a jump-and-reach test. Results: Boys (n = 128) had higher hip and total body BMC and BMD, higher FFM, higher muscle strength and were more physically active than girls (n = 141). Total hip BMC was positively associated with time spent in total and vigorous PA in boys (r = 0.20-0.33, p < 0.01), but not in girls (r = 0.02-0.04, p=ns), even after adjusting for FFM and strength. While boys and girls in the lowest tertile of vigorous PA (22min/day) did not differ in hip BMC (15.62 vs 15.52g), boys in the highest tertile (72min/day) had significantly higher values than the corresponding girls (16.84 vs 15.71g, p < 0.05). Conclusions: Sex differences in BMC during pre- and early puberty may be related to a different sensitivity of bone to physical loading, irrespective of muscle mas

    Practical Recommendations of the Obesity Management Task Force of the European Association for the Study of Obesity for the Post-Bariatric Surgery Medical Management

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    Bariatric surgery is today the most effective long-term therapy for the management of patients with severe obesity, and its use is recommended by the relevant guidelines of the management of obesity in adults. Bariatric surgery is in general safe and effective, but it can cause new clinical problems and is associated with specific diagnostic, preventive and therapeutic needs. For clinicians, the acquisition of special knowledge and skills is required in order to deliver appropriate and effective care to the post-bariatric patient. In the present recommendations, the basic notions needed to provide first-level adequate medical care to post-bariatric patients are summarised. Basic information about nutrition, management of co-morbidities, pregnancy, psychological issues as well as weight regain prevention and management is derived from current evidences and existing guidelines. A short list of clinical practical recommendations is included for each item. It remains clear that referral to a bariatric multidisciplinary centre, preferably the one performing the original procedure, should be considered in case of more complex clinical situations

    Effectiveness of individual and group programmes to treat obesity and reduce cardiovascular disease risk factors in pre‐pubertal children

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    Childhood obesity results in premature atherosclerosis and requires early intervention. Compare the effectiveness of 6‐month lifestyle interventions (with choice of either individual or group therapy) with standard care on body mass index (BMI) z‐score and cardiovascular disease (CVD) risks factors in children with obesity. This 6‐month randomized controlled trial with a 6‐month follow‐up included 74 pre‐pubertal children with obesity (7.5‐11.9 years) assigned randomly (2:1) to intervention or control. Families in the intervention arm choose between an individually delivered treatment (3 hours paediatrician + 4 hours dietician) or group treatment (35 hours with a multidisciplinary team). Children participated also to a weekly physical activity programme. We measured BMI, BMI z‐score; waist circumference (WC); total and abdominal fat; blood pressure; common carotid artery intima‐media thickness and incremental elastic modulus (Einc); endothelium‐dependent and independent dilation (nitroglycerin‐mediated dilation [NTGMD]) of the brachial artery; fasting plasma glucose, insulin, lipids; and high‐sensitivity C‐reactive protein (hs‐CRP). Compared to controls, at 6 months, abdominal fat and hs‐CRP were reduced in both interventions. The group intervention was also effective in reducing BMI (−0.55 kg/m2; 95% confidence interval −1.16 to 0.06) and BMI z‐score (−0.08; −0.15 to 0.00) at 6 months and BMI, BMI z‐score, WC, NTGMD, total and abdominal fat at 12 months. Abdominal fat and low‐grade inflammation were significantly decreased in both interventions. High‐intensity group treatment improved early signs of atherosclerosis in children with obesity. These findings are important for the promotion of cardiometabolic health in this population
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