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Assessment of adult body composition using bioelectrical impedance: comparison of researcher calculated to machine outputted values

机译:使用生物电阻抗评估成人身体成分:计算机与研究机输出值的比较

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摘要

Objectives: To explore the usefulness of Bioelectrical Impedance Analysis (BIA) for general use by identifying best-evidenced formulae to calculate lean and fat mass, comparing these to historical gold standard data and comparing these results with machine-generated output. In addition, we explored how to best to adjust lean and fat estimates for height and how these overlapped with body mass index (BMI).\ud\udDesign: Cross-sectional observational study within population representative cohort study.\ud\udSetting: Urban community, North East England\ud\udParticipants: Sample of 506 mothers of children aged 7–8 years, mean age 36.3 years.\ud\udMethods: Participants were measured at a home visit using a portable height measure and leg-to-leg BIA machine (Tanita TBF-300MA).\ud\udMeasures: Height, weight, bioelectrical impedance (BIA).\ud\udOutcome measures: Lean and fat mass calculated using best-evidenced published formulae as well as machine-calculated lean and fat mass data.\ud\udResults: Estimates of lean mass were similar to historical results using gold standard methods. When compared with the machine-generated values, there were wide limits of agreement for fat mass and a large relative bias for lean that varied with size. Lean and fat residuals adjusted for height differed little from indices of lean (or fat)/height2. Of 112 women with BMI >30 kg/m2, 100 (91%) also had high fat, but of the 16 with low BMI (<19 kg/m2) only 5 (31%) also had low fat.\ud\udConclusions: Lean and fat mass calculated from BIA using published formulae produces plausible values and demonstrate good concordance between high BMI and high fat, but these differ substantially from the machine-generated values. Bioelectrical impedance can supply a robust and useful field measure of body composition, so long as the machine-generated output is not used.
机译:目的:通过确定最佳证据公式来计算瘦体重和脂肪质量,将其与历史黄金标准数据进行比较,并将这些结果与机器生成的输出进行比较,以探索生物电阻抗分析(BIA)在一般用途中的实用性。此外,我们探索了如何最佳地调整身高和体重的瘦肉和脂肪估计,以及它们如何与体重指数(BMI)重叠。\ ud \ ud设计:人群代表性队列研究中的横断面观察研究。\ ud \ ud设置:城市参与者:506位7-8岁儿童的母亲的样本,平均年龄36.3岁。\ ud \ ud方法:参加者在家庭访问中使用便携式身高测量仪和双腿测量BIA机器(Tanita TBF-300MA)。\ ud \ ud度量标准:身高,体重,生物电阻抗(BIA)。质量数据。\ ud \ ud结果:瘦肉质量的估计与使用黄金标准方法的历史结果相似。与机器生成的值进行比较时,脂肪量的一致性范围很广,而瘦肉的相对偏差则随大小而变化。根据身高调整后的瘦肉和脂肪残渣与瘦肉(或脂肪)/身高指数的差异不大。在112名BMI> 30 kg / m2的女性中,有100名(91%)的脂肪也很高,但是在16名BMI低(<19 kg / m2)中的女性中,只有5名(31%)的脂肪也低。 :根据BIA使用公开的公式计算的瘦体重和脂肪质量产生合理的值,并证明高BMI和高脂肪之间具有良好的一致性,但这些值与机器生成的值有很大不同。只要不使用机器产生的输出,生物电阻抗就可以提供强大而有用的身体成分测量方法。

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