ReviewReviews in endocrine & metabolic disorders2025
The science of bioelectrical impedance-derived phase angle: insights from body composition in youth.
Review in Reviews in endocrine & metabolic disorders, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 17 papers.
What it found
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The trial behind it
Trials whose registry record cites this paper, or whose number appears in the abstract. A trial that started after this paper was published is citing it as background, not reporting it.
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Who cites it
17 citing papers in PubMed.
- Resistance training and β-hydroxy-β-methylbutyrate for functional recovery in critical illness: a multicenter 2 × 2 factorial randomized trial.Critical care (London, England) · 2025Trial
- Phase angle reference values derived from bioelectrical impedance analysis in chinese multi-ethnic adults.Annals of medicine · 2026Article
- What is measured and what is estimated in body composition? A clarification framework for terminology and interpretation.Reviews in endocrine & metabolic disorders · 2026Review
- Bioimpedance: From Body Composition Assessment to Emerging Technologies in Clinical Nutrition.Nutrients · 2026Review
- Relationship Between Age and Grip Strength, Phase Angle, and Impedance Rate Measured by Bioelectrical Impedance Analysis in Japanese Individuals Aged 15-18 Years.Physiological research · 2026Article
- Reference values for bioelectrical impedance-derived phase angle: a cross-sectional study of 5,049 healthy individuals from Colombia.European journal of clinical nutrition · 2026Article
- Baseline phase angle is associated with morphofunctional status, length of stay, and hospitalization costs in severe anorexia nervosa: the EDIGRA study.Journal of eating disorders · 2026Article
- Association of the phase angle with type 2 diabetes and related traits: results from two prospective KORA studies.Nutrition & diabetes · 2026Article
- Effect of Oral Ketone Body Intake on Human CD8Nutrients · 2026Article
- Integrating body composition analysis and machine learning for non-invasive identification of metabolic dysfunction-associated fatty liver disease: a large-scale health examination-based study.Scientific reports · 2026Article
- Associations of physical activity with phase angle in adolescents living with HIV: The moderating and mediating roles of physical fitness.Physiological reports · 2026Article
- Changes in Bioelectrical Impedance Analysis and Lipid Profile in Children Diagnosed with Short Stature Who Undergo Growth Hormone Therapy: One Single-Center Experience.Medicina (Kaunas, Lithuania) · 2026Article
- Legume Consumption Improves Cellular Health and Autonomic Function in Competitive Swimmers.Nutrients · 2026Article
- Real-world assessment of Multi-Frequency Bioelectrical Impedance Analysis (MFBIA) for measuring body composition in healthy physically active populations.European journal of clinical nutrition · 2025Article
- Article
- The Role of Phase Angle in Non-Invasive Fluid Assessment in Dogs with Patent Ductus Arteriosus: A Novel Method in Veterinary Cardiology.Veterinary sciences · 2025Article
- Bioelectrical impedance vector analysis and phase angle to verify early hydration status and prognosis in hospitalized children with nephrotic syndrome: an exploratory case series.Frontiers in nutrition · 2025Article
Corrections and comments
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Authors and funding
3 authors.
Funding
No grant is acknowledged in the PubMed record.
Abstract
Despite bioelectrical impedance analysis (BIA)-derived phase angle (PhA) being recognized as a global marker of health, reflecting both cellular integrity and fluid distribution, its biological determinants still need to be described in youth. This narrative review provides a comprehensive framework examining to what extent dielectric properties shaping PhA are influenced by qualitative and quantitative determinants at multiple levels of body composition in healthy and clinical pediatric populations. At the atomic-molecular level, water content, glycogen, lipids, and ionic concentrations are expected to influence PhA by affecting electrical conductivity and/or capacitance. While the increase in the absolute values of intracellular (ICW) and extracellular water (ECW) enhances electric conductivity, an increase in the relative portion of ECW is expected to reflect hydration imbalances with an impact on electrical pathways. At the cellular level, body cell mass is a key determinant of PhA, mainly due to the presence of skeletal muscle cells favoring conductive and capacitive properties. At the tissue level, skeletal muscle architecture and orientation strongly influence conductivity, while increases in skeletal muscle mass positively impact PhA by enhancing electric conductivity and capacitance. Beyond the theoretical insights presented in this review, careful interpretation of dielectric data remains crucial due to the lack of methodological standardization. Future research should prioritize validated reference methods, investigate longitudinal changes, integrate localized BIA, and explore additional BIA models to refine the interpretation of PhA.
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Registered trials
Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the Socratic graph.