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用于日常肥胖管理的基于智能手机的生物电阻抗分析设备。

Smartphone-Based Bioelectrical Impedance Analysis Devices for Daily Obesity Management.

作者信息

Choi Ahyoung, Kim Justin Younghyun, Jo Seongwook, Jee Jae Hwan, Heymsfield Steven B, Bhagat Yusuf A, Kim Insoo, Cho Jaegeol

机构信息

DMC R&D Center, Samsung Electronics, Suwon 16677, Gyeonggi, Korea.

Center for Health Promotion, Samsung Medical Center, Seoul 06351, Korea.

出版信息

Sensors (Basel). 2015 Sep 2;15(9):22151-66. doi: 10.3390/s150922151.

Abstract

Current bioelectric impedance analysis (BIA) systems are often large, cumbersome devices which require strict electrode placement on the user, thus inhibiting mobile capabilities. In this work, we developed a handheld BIA device that measures impedance from multiple frequencies (5 kHz~200 kHz) with four contact electrodes and evaluated the BIA device against standard body composition analysis systems: a dual-energy X-ray absorptiometry (DXA) system (GE Lunar Prodigy, GE Healthcare, Buckinghamshire, UK) and a whole-body BIA system (InBody S10, InBody, Co. Ltd, Seoul, Korea). In the study, 568 healthy participants, varying widely in body mass index, age, and gender, were recruited at two research centers: the Samsung Medical Center (SMC) in South Korea and the Pennington Biomedical Research Center (PBRC) in the United States. From the measured impedance data, we analyzed individual body fat and skeletal muscle mass by applying linear regression analysis against target reference data. Results indicated strong correlations of impedance measurements between the prototype pathways and corresponding InBody S10 electrical pathways (R = 0.93, p < 0.0001). Additionally, body fat estimates from DXA did not yield significant differences (p > 0.728 (paired t-test), DXA mean body fat 29.45 ± 10.77 kg, estimated body fat 29.52 ± 12.53 kg). Thus, this portable BIA system shows a promising ability to estimate an individual's body composition that is comparable to large stationary BIA systems.

摘要

当前的生物电阻抗分析(BIA)系统通常体积庞大、使用不便,需要在用户身上严格放置电极,从而限制了其移动能力。在这项工作中,我们开发了一种手持式BIA设备,该设备通过四个接触电极测量多个频率(5 kHz至200 kHz)的阻抗,并与标准身体成分分析系统对该BIA设备进行了评估:双能X射线吸收法(DXA)系统(GE Lunar Prodigy,GE Healthcare,英国白金汉郡)和全身BIA系统(InBody S10,InBody有限公司,韩国首尔)。在该研究中,在两个研究中心招募了568名健康参与者,他们在体重指数、年龄和性别方面差异很大:韩国的三星医疗中心(SMC)和美国的彭宁顿生物医学研究中心(PBRC)。根据测量的阻抗数据,我们通过对目标参考数据应用线性回归分析来分析个体的体脂和骨骼肌质量。结果表明,原型通路与相应的InBody S10电气通路之间的阻抗测量具有很强的相关性(R = 0.93,p < 0.0001)。此外,DXA估计的体脂没有产生显著差异(p > 0.728(配对t检验),DXA平均体脂29.45±10.77 kg,估计体脂29.52±12.53 kg)。因此,这种便携式BIA系统显示出有希望的能力来估计个体的身体成分,这与大型固定式BIA系统相当。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7abe/4610453/05e1d3465986/sensors-15-22151-g001.jpg

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