Abdominal fat, and in particular, visceral adipose tissue (VAT), is the critical fat depot associated with metabolic aberrations. At present, VAT can only be accurately measured by computed tomography or magnetic resonance imaging (MRI). This study was designed to compare a new abdominal bioelectrical impedance (BIA) device against total abdominal adipose tissue (TAAT) and VAT area measurements made from an abdominal MRI scan, and to assess its reliability and accuracy. One-hundred twenty participants were recruited, stratified by gender and BMI. Participants had triplicate measures of abdominal fat and waist circumference (WC) with the AB-140 (Tanita, Tokyo, Japan) and WC measurements using a manual tape measure. A single abdominal MRI sca...
INTRODUCTION: Given the considerable time and research cost of analyzing biomedical images to quanti...
Background: This study aimed to assess the accuracy of the standing leg-to-leg bioelectrical impedan...
Objective: To evaluate the feasibility of quantifying visceral adipose tissue (VAT) on computed tomo...
Abdominal fat, and in particular, visceral adipose tissue (VAT), is the critical fat depot associate...
Background/Objectives: Abdominal obesity, more specifically increased intra-abdominal adipose tissu...
Objective This study aimed to compare a state‐of‐the‐art bioelectrical impedance analysis (BIA) dev...
Ryo et al (2005 Diabetes Care 28 451–3) reported a new method for measuring the visceral fat area (V...
OBJECTIVE: This cross-sectional study compares the relationship of visceral and total abdominal adip...
Objectives The measurement of visceral fat (VF) is clinically important for the identification of in...
Objective: MRI is established for measurement of body fat mass (FM) and abdominal visceral adipose t...
Introduction: Body composition is a key determinant of health. Many methods, including b...
We evaluated the concordance between visceral fat area (VFA) estimated by bioelectrical impedance an...
Abstract Background Body electrical loss analysis (BELA) is a new non-invasive way to assess viscera...
Visceral fat shows a stronger relationship with the incidence of metabolic syndrome and cardiovascul...
Title: The correlation between the amount of fat in the abdominal area and the amount of visceral fa...
INTRODUCTION: Given the considerable time and research cost of analyzing biomedical images to quanti...
Background: This study aimed to assess the accuracy of the standing leg-to-leg bioelectrical impedan...
Objective: To evaluate the feasibility of quantifying visceral adipose tissue (VAT) on computed tomo...
Abdominal fat, and in particular, visceral adipose tissue (VAT), is the critical fat depot associate...
Background/Objectives: Abdominal obesity, more specifically increased intra-abdominal adipose tissu...
Objective This study aimed to compare a state‐of‐the‐art bioelectrical impedance analysis (BIA) dev...
Ryo et al (2005 Diabetes Care 28 451–3) reported a new method for measuring the visceral fat area (V...
OBJECTIVE: This cross-sectional study compares the relationship of visceral and total abdominal adip...
Objectives The measurement of visceral fat (VF) is clinically important for the identification of in...
Objective: MRI is established for measurement of body fat mass (FM) and abdominal visceral adipose t...
Introduction: Body composition is a key determinant of health. Many methods, including b...
We evaluated the concordance between visceral fat area (VFA) estimated by bioelectrical impedance an...
Abstract Background Body electrical loss analysis (BELA) is a new non-invasive way to assess viscera...
Visceral fat shows a stronger relationship with the incidence of metabolic syndrome and cardiovascul...
Title: The correlation between the amount of fat in the abdominal area and the amount of visceral fa...
INTRODUCTION: Given the considerable time and research cost of analyzing biomedical images to quanti...
Background: This study aimed to assess the accuracy of the standing leg-to-leg bioelectrical impedan...
Objective: To evaluate the feasibility of quantifying visceral adipose tissue (VAT) on computed tomo...