Healthcare Sensor Lab, Device Research Center, Samsung Advanced Institute of Technology, Samsung Electronics Co., Ltd., 130 Samsung-ro, Yeongtong-gu, Suwon-si, 443-803, Gyeonggi-do, Korea.
GI Innovation, Inc., A-1116 Tera Tower, 167, Songpa-daero, Songpa-gu, Seoul, Korea.
Sci Rep. 2021 Jan 13;11(1):1238. doi: 10.1038/s41598-020-79667-3.
Bioelectrical impedance analysis (BIA) is used to analyze human body composition by applying a small alternating current through the body and measuring the impedance. The smaller the electrode of a BIA device, the larger the impedance measurement error due to the contact resistance between the electrode and human skin. Therefore, most commercial BIA devices utilize electrodes that are large enough (i.e., 4 × 1400 mm) to counteract the contact resistance effect. We propose a novel method of compensating for contact resistance by performing 4-point and 2-point measurements alternately such that body impedance can be accurately estimated even with considerably smaller electrodes (outer electrodes: 68 mm; inner electrodes: 128 mm). Additionally, we report the use of a wrist-wearable BIA device with single-finger contact measurement and clinical test results from 203 participants at Seoul St. Mary's Hospital. The correlation coefficient and standard error of estimate of percentage body fat were 0.899 and 3.76%, respectively, in comparison with dual-energy X-ray absorptiometry. This result exceeds the performance level of the commercial upper-body portable body fat analyzer (Omron HBF-306). With a measurement time of 7 s, this sensor technology is expected to provide a new possibility of a wearable bioelectrical impedance analyzer, toward obesity management.
生物电阻抗分析(BIA)通过向人体施加小交流电流并测量阻抗来分析人体成分。 BIA 设备的电极越小,由于电极与人体皮肤之间的接触电阻,阻抗测量误差就越大。因此,大多数商业 BIA 设备使用足够大的电极(即 4×1400mm)来抵消接触电阻的影响。我们提出了一种通过交替进行 4 点和 2 点测量来补偿接触电阻的新方法,即使使用相当小的电极(外电极:68mm;内电极:128mm),也可以准确估计体阻抗。此外,我们报告了一种使用腕戴式 BIA 设备进行单指接触测量的方法,并在首尔圣玛丽医院对 203 名参与者进行了临床测试。与双能 X 射线吸收法相比,体脂百分比的相关系数和估计标准误差分别为 0.899 和 3.76%。这一结果超过了商用上半身便携式体脂分析仪(欧姆龙 HBF-306)的性能水平。该传感器技术的测量时间为 7s,有望为可穿戴生物电阻抗分析仪在肥胖管理方面提供新的可能。