生物电阻抗衍生相位角的科学:来自青年身体成分的见解。

IF 6.9 2区 医学 Q1 ENDOCRINOLOGY & METABOLISM
Gil B Rosa, Henry C Lukaski, Luís B Sardinha
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引用次数: 0

摘要

尽管生物电阻抗分析(BIA)衍生的相位角(PhA)被认为是健康的全球标志,反映了细胞完整性和流体分布,但其生物学决定因素仍需要在青年中进行描述。这篇叙述性综述提供了一个全面的框架,研究在健康和临床儿科人群中,形成PhA的介电特性在多大程度上受到多层次身体组成的定性和定量决定因素的影响。在原子-分子水平上,水含量、糖原、脂质和离子浓度预计会通过影响电导率和/或电容来影响PhA。虽然细胞内(ICW)和细胞外水(ECW)绝对值的增加增强了电导率,但ECW相对比例的增加预计反映了水合作用的不平衡,对电通路产生了影响。在细胞水平上,体细胞质量是PhA的关键决定因素,主要是由于骨骼肌细胞的存在有利于导电和电容特性。在组织水平上,骨骼肌结构和取向强烈影响电导率,而骨骼肌质量的增加通过增强电导率和电容积极影响PhA。除了本综述中提出的理论见解之外,由于缺乏方法标准化,对介电数据的仔细解释仍然至关重要。未来的研究应优先考虑经过验证的参考方法,研究纵向变化,整合局部BIA,并探索其他BIA模型来完善PhA的解释。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The science of bioelectrical impedance-derived phase angle: insights from body composition in youth.

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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来源期刊
Reviews in Endocrine & Metabolic Disorders
Reviews in Endocrine & Metabolic Disorders 医学-内分泌学与代谢
CiteScore
14.70
自引率
1.20%
发文量
75
审稿时长
>12 weeks
期刊介绍: Reviews in Endocrine and Metabolic Disorders is an international journal dedicated to the field of endocrinology and metabolism. It aims to provide the latest advancements in this rapidly advancing field to students, clinicians, and researchers. Unlike other journals, each quarterly issue of this review journal focuses on a specific topic and features ten to twelve articles written by world leaders in the field. These articles provide brief overviews of the latest developments, offering insights into both the basic aspects of the disease and its clinical implications. This format allows individuals in all areas of the field, including students, academic clinicians, and practicing clinicians, to understand the disease process and apply their knowledge to their specific areas of interest. The journal also includes selected readings and other essential references to encourage further in-depth exploration of specific topics.
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