Background: Bioelectrical impedance analysis (BIA) is a validated method to assess body composition in persons with fluid homeostasis and reliable body weight. This is not the case during critical illness. The raw BIA markers resistance, reactance, phase angle, and vector length are body weight independent. Phase angle reflects cellular health and has prognostic significance. We aimed to assess the course of phase angle and vector length during intensive care unit (ICU) admission, and determine the relation between their changes (Δ) and changes in body hydration. Methods: A prospective, dual-center observational study of adult ICU patients was conducted. Univariate and multivariable regression analyses were performed, including reactance as...
Background & aims: Gaining insight into readily obtainable baseline characteristics that allow predi...
Background: The non-invasive analysis of body fluid composition with bio-electrical impedance analys...
Abstract We determined the relationship between changes in bioelectrical impedance analysis (BIA) pa...
Background Bioelectrical impedance analysis (BIA) is a validated method to assess body composition i...
Background Bioelectrical impedance analysis (BIA) is a validated method to assess body composition i...
Background: Clinical trials have shown a positive correlation between fluid overload and adverse out...
Background: In critically ill patients, muscle loss is associated with adverse outcomes. Raw bioelec...
Introduction. We wished to determine bioelectrical impedance (BIA) correlates before hydration or ch...
Bioelectrical impedance analysis (BIA) is a promising tool to evaluate the body composition of criti...
BACKGROUND/OBJECTIVES: A low bioelectrical impedance analysis (BIA)-derived phase angle (PA) predict...
BACKGROUND: In critically ill patients, muscle loss is associated with adverse outcomes. Raw bioelec...
The impact of a positive fluid balance on morbidity and mortality has been well established. However...
Background: Studies have demonstrated a positive correlation between fluid overload (FO) and adverse...
Background & aims: Gaining insight into readily obtainable baseline characteristics that allow predi...
Background: The non-invasive analysis of body fluid composition with bio-electrical impedance analys...
Abstract We determined the relationship between changes in bioelectrical impedance analysis (BIA) pa...
Background Bioelectrical impedance analysis (BIA) is a validated method to assess body composition i...
Background Bioelectrical impedance analysis (BIA) is a validated method to assess body composition i...
Background: Clinical trials have shown a positive correlation between fluid overload and adverse out...
Background: In critically ill patients, muscle loss is associated with adverse outcomes. Raw bioelec...
Introduction. We wished to determine bioelectrical impedance (BIA) correlates before hydration or ch...
Bioelectrical impedance analysis (BIA) is a promising tool to evaluate the body composition of criti...
BACKGROUND/OBJECTIVES: A low bioelectrical impedance analysis (BIA)-derived phase angle (PA) predict...
BACKGROUND: In critically ill patients, muscle loss is associated with adverse outcomes. Raw bioelec...
The impact of a positive fluid balance on morbidity and mortality has been well established. However...
Background: Studies have demonstrated a positive correlation between fluid overload (FO) and adverse...
Background & aims: Gaining insight into readily obtainable baseline characteristics that allow predi...
Background: The non-invasive analysis of body fluid composition with bio-electrical impedance analys...
Abstract We determined the relationship between changes in bioelectrical impedance analysis (BIA) pa...