首页> 美国卫生研究院文献>The Journals of Gerontology Series A: Biological Sciences and Medical Sciences >Electrical Properties Assessed by Bioelectrical Impedance Spectroscopy as Biomarkers of Age-related Loss of Skeletal Muscle Quantity and Quality
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Electrical Properties Assessed by Bioelectrical Impedance Spectroscopy as Biomarkers of Age-related Loss of Skeletal Muscle Quantity and Quality

机译:通过生物电阻抗光谱法评估的电特性作为与年龄相关的骨骼肌数量和质量丧失的生物标记

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摘要

Skeletal muscle, in addition to being comprised of a heterogeneous muscle fiber population, also includes extracellular components that do not contribute to positive tensional force production. Here we test segmental bioelectrical impedance spectroscopy (S-BIS) to assess muscle intracellular mass and composition. S-BIS can evaluate electrical properties that may be related to muscle force production. Muscle fiber membranes separate the intracellular components from the extracellular environment and consist of lipid bilayers which act as an electrical capacitor. We found that S-BIS measures accounted for ~85% of the age-related decrease in appendicular muscle power compared with only ~49% for dual-energy x-ray absorptiometry (DXA) measures. Indices of extracellular (noncontractile) and cellular (contractile) compartments in skeletal muscle tissues were determined using the Cole–Cole plot from S-BIS measures. Characteristic frequency, membrane capacitance, and phase angle determined by Cole–Cole analysis together presented a S-BIS complex model that explained ~79% of interindividual variance of leg muscle power. This finding underscores the value of S-BIS to measure muscle composition rather than lean mass as measured by DXA and suggests that S-BIS should be highly informative in skeletal muscle physiology.
机译:骨骼肌除了由异质肌纤维组成外,还包括对正向拉力产生无贡献的细胞外成分。在这里,我们测试分段生物电阻抗光谱(S-BIS),以评估肌肉细胞内质量和组成。 S-BIS可以评估可能与肌肉力量产生有关的电学性质。肌纤维膜将细胞内组分与细胞外环境分开,并由充当电容器的脂质双层组成。我们发现,S-BIS措施约占年龄相关性阑尾肌力量下降的85%,而双能X射线吸收法(DXA)措施仅约49%。骨骼肌组织中的细胞外(非收缩性)和细胞(收缩性)区室的指标是使用S-BIS测度的Cole-Cole图确定的。通过Cole-Cole分析确定的特征频率,膜电容和相角共同提供了一个S-BIS复杂模型,该模型可解释约79%的腿部肌肉力量个体差异。这一发现强调了S-BIS用来测量肌肉成分而不是DXA所测量的瘦体重的价值,并表明S-BIS在骨骼肌生理学中应该具有很高的信息价值。

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