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两种多频生物阻抗设备的电阻、电抗和相位角值的横断面和纵向一致性。

Cross-sectional and longitudinal agreement between two multifrequency bioimpedance devices for resistance, reactance, and phase angle values.

机构信息

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

Exercise and Health Laboratory, CIPER, Faculdade Motricidade Humana, Universidade de Lisboa, Lisbon, Portugal.

出版信息

Eur J Clin Nutr. 2020 Jun;74(6):900-911. doi: 10.1038/s41430-019-0496-8. Epub 2019 Aug 27.

Abstract

BACKGROUND

The use of raw bioelectrical variables, such as resistance (R), reactance (Xc), and phase angle (φ), has been advocated for evaluating physiological changes.

METHODS

Before and after 8 weeks of resistance training, adult females were assessed via multifrequency bioelectrical impedance analysis (MFBIA; Seca® mBCA 515/514) and bioimpedance spectroscopy (BIS; ImpediMed® SFB7). Data were analyzed to determine whether cross-sectional estimates and changes (i.e., Δ scores) of R, Xc, and φ differed between devices at 16 shared measurement frequencies ranging from 3 to 1000 kHz.

RESULTS

Cross-sectionally, strong correlations (r ≥ 0.96) were observed for R across all frequencies, although MFBIA produced values 9-14% greater than BIS. Strong correlations (r ≥ 0.92) for Xc and φ were observed up to frequencies of ~150 kHz. BIS produced greater Xc and φ values at lower frequencies, while MFBIA produced greater values at higher frequencies. In general, proportional bias was not observed, with the exception of Xc at high frequencies and φ at low frequencies. ΔR did not differ between devices at any frequency and was correlated at all frequencies. ΔXc and Δφ did not differ at any frequency and were correlated between devices for frequencies up to ~300 kHz. Proportional bias was generally not observed longitudinally. While individual-level errors were potentially acceptable cross-sectionally, they were concerningly high longitudinally.

CONCLUSION

Despite notable differences in the characteristics of the bioimpedance devices and cross-sectional disagreement, strong group-level agreement for detecting changes in R, Xc, and φ was generally observed. However, large errors were observed at the individual level.

摘要

背景

使用原始生物电变量,如电阻(R)、电抗(Xc)和相位角(φ),已被提倡用于评估生理变化。

方法

在 8 周的抗阻训练前后,通过多频生物电阻抗分析(MFBIA;Seca® mBCA 515/514)和生物阻抗谱(BIS;ImpediMed® SFB7)对成年女性进行评估。分析数据以确定在 16 个共享测量频率(3 至 1000 kHz)下,两种设备的 R、Xc 和 φ 的横截面估计值和变化(即 Δ 评分)是否存在差异。

结果

横截面分析显示,R 在所有频率下均具有很强的相关性(r≥0.96),尽管 MFBIA 产生的 R 值比 BIS 高 9-14%。Xc 和 φ 在最高至 150 kHz 的频率下具有很强的相关性(r≥0.92)。BIS 在较低频率下产生更大的 Xc 和 φ 值,而 MFBIA 在较高频率下产生更大的值。一般来说,除了高频下的 Xc 和低频下的 φ 之外,没有观察到比例偏差。在任何频率下,ΔR 都没有差异,并且在所有频率下都具有相关性。在任何频率下,ΔXc 和 Δφ 都没有差异,并且在高达 300 kHz 的频率下,两种设备之间具有相关性。在纵向观察中,通常没有观察到比例偏差。尽管在生物阻抗设备的特性方面存在明显差异,并且在横截面方面存在不一致,但在检测 R、Xc 和 φ 变化方面,通常观察到较强的组间一致性。然而,在个体水平上观察到的误差较大。

结论

尽管生物阻抗设备的特性存在显著差异,且横截面结果存在分歧,但在检测 R、Xc 和 φ 变化方面,通常观察到组间的强一致性。然而,在个体水平上观察到的误差较大。

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