Key result
Neck circumference and gender explain ~24% of PWVcr variance in overweight and obese subjects.
Why the study?
Is high neck circumference associated with increased arterial stiffness and insulin resistance in overweight and obese subjects?
Cross-Sectional
Is high neck circumference associated with increased arterial stiffness and insulin resistance in overweight and obese subjects?
Neck circumference is an independent predictor of carotid-radial pulse wave velocity, suggesting upper-body subcutaneous fat is a useful, easily measured marker for cardiometabolic risk stratification.
Neck circumference may aid cardiometabolic risk stratification in overweight patients; leaves open its added value beyond waist circumference in prospective studies.
. In each subject we evaluated body mass index, waist, hip and neck circumference, systolic and diastolic blood pressure, insulin, fasting glucose, cholesterol, low-density lipoprotein and high-density lipoprotein cholesterol and triglycerides. Arterial stiffness was assessed by carotid-femoral pulse wave velocity (PWVcf) and carotid-radial pulse wave velocity (PWVcr). Both PWVcf and PWVcr were higher in subjects with high values of neck circumference compared with subjects with normal values of neck circumference. Subjects with high values of neck circumference and abdominal obesity presented higher values of mean arterial pressure, PWVcr and homeostasis model assessment (HOMA) index and lower values of high-density lipoprotein than subjects with only abdominal obesity. Two models of stepwise multiple regression were performed in order to evaluate the combined effect of independent variables on arterial stiffness. In the first model PWVcf was considered a dependent variable, and age, gender, systolic blood pressure, triglycerides, high-density lipoprotein cholesterol, waist circumference, neck circumference, HOMA index and the use of anti-hypertensive medications were considered independent variables. Age, systolic blood pressure, triglycerides and waist circumference were significant predictors of PWVcf, explaining 65% of its variance. In the second model, in which PWVcr was considered a dependent variable, neck circumference and gender were significant predictors of PWVcr, explaining 24% of its variance. Conclusions These findings emphasise the need to measure not only waist but even neck circumference to better stratify and identify individuals at increased cardiometabolic risk, as upper-body subcutaneous fat is a novel, easily measured fat depot.
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Fantin et al. (2017) conducted a cross-sectional in Overweight and obesity. Neck circumference vs. Normal neck circumference was evaluated on Arterial stiffness assessed by carotid-femoral (PWVcf) and carotid-radial pulse wave velocity (PWVcr). Neck circumference and gender were significant predictors of carotid-radial pulse wave velocity (PWVcr), explaining 24% of its variance in overweight and obese subjects.
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