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评估十五种生物电阻抗分析设备的可靠性以及横断面和纵向有效性。

Assessing the reliability and cross-sectional and longitudinal validity of fifteen bioelectrical impedance analysis devices.

机构信息

Department of Kinesiology and Sport Management, Texas Tech University, Lubbock, TX, USA.

出版信息

Br J Nutr. 2023 Sep 14;130(5):827-840. doi: 10.1017/S0007114522003749. Epub 2022 Nov 21.

Abstract

The purpose of this investigation was to expand upon the limited existing research examining the test-retest reliability, cross-sectional validity and longitudinal validity of a sample of bioelectrical impedance analysis (BIA) devices as compared with a laboratory four-compartment (4C) model. Seventy-three healthy participants aged 19-50 years were assessed by each of fifteen BIA devices, with resulting body fat percentage estimates compared with a 4C model utilising air displacement plethysmography, dual-energy X-ray absorptiometry and bioimpedance spectroscopy. A subset of thirty-seven participants returned for a second visit 12-16 weeks later and were included in an analysis of longitudinal validity. The sample of devices included fourteen consumer-grade and one research-grade model in a variety of configurations: hand-to-hand, foot-to-foot and bilateral hand-to-foot (octapolar). BIA devices demonstrated high reliability, with precision error ranging from 0·0 to 0·49 %. Cross-sectional validity varied, with constant error relative to the 4C model ranging from -3·5 (sd 4·1) % to 11·7 (sd 4·7) %, standard error of the estimate values of 3·1-7·5 % and Lin's concordance correlation coefficients (CCC) of 0·48-0·94. For longitudinal validity, constant error ranged from -0·4 (sd 2·1) % to 1·3 (sd 2·7) %, with standard error of the estimate values of 1·7-2·6 % and Lin's CCC of 0·37-0·78. While performance varied widely across the sample investigated, select models of BIA devices (particularly octapolar and select foot-to-foot devices) may hold potential utility for the tracking of body composition over time, particularly in contexts in which the purchase or use of a research-grade device is infeasible.

摘要

这项研究的目的是扩展有限的现有研究,检验生物电阻抗分析(BIA)设备样本的测试-再测试可靠性、横断面有效性和纵向有效性,并与实验室四室(4C)模型进行比较。73 名年龄在 19-50 岁的健康参与者接受了 15 种 BIA 设备的评估,其体脂百分比估计值与利用空气置换体积描记法、双能 X 射线吸收法和生物阻抗光谱法的 4C 模型进行比较。37 名参与者中的一部分在 12-16 周后返回进行第二次访问,并纳入了纵向有效性分析。设备样本包括 14 种消费级和 1 种研究级模型,采用各种配置:手对手、脚对脚和双侧手对脚(八极)。BIA 设备具有高度可靠性,精度误差范围为 0.0 至 0.49%。横断面有效性存在差异,相对于 4C 模型的恒误差范围为-3.5(sd 4.1)%至 11.7(sd 4.7)%,估计值的标准误差为 3.1-7.5%,Lin 的一致性相关系数(CCC)为 0.48-0.94。对于纵向有效性,恒误差范围为-0.4(sd 2.1)%至 1.3(sd 2.7)%,估计值的标准误差为 1.7-2.6%,Lin 的 CCC 为 0.37-0.78。虽然在研究的样本中,性能差异很大,但 BIA 设备的某些模型(特别是八极和某些脚对脚设备)可能具有随时间跟踪身体成分的潜在用途,特别是在购买或使用研究级设备不可行的情况下。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f471/10404482/1a9b2ec4958a/S0007114522003749_fig1.jpg

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