González Landaeta R, Casas O, Pallàs-Areny R
Instrumentation, Sensors & Interfaces Group, Castelldefels School of Technology, Technical University of Catalonia, Barcelona, Spain.
Conf Proc IEEE Eng Med Biol Soc. 2006;2006:5113-6. doi: 10.1109/IEMBS.2006.260822.
The heart rate is a basic health indicator, useful in both clinical measurements and home health care. Current home care systems often require the attachment of electrodes or other sensors to the body, which can be cumbersome to the patient. Moreover, some measurements are sensitive to movement artifacts, are not user-friendly and require a specialized supervision. In this paper, a novel technique for heart rate measurement for a standing subject is proposed, which is based on plantar bioimpedance measurements, such as those performed by some bathroom weighting scales for body composition analysis. Because of the low level of heart-related impedance variations, the measurement system has a gain of 1400. We have implemented a fully differential AC amplifier with a common-mode rejection ratio (CMRR) of 105 dB at 10 kHz. Coherent demodulation based on synchronous sampling yields a signal-to-noise ratio (SNR) of 55 dB. The system has a sensitivity of 1.9 V/Omega. The technique has been demonstrated on 18 volunteers, whose bioimpedance signal and ECG were simultaneously measured to validate the results. The average cross-correlation coefficient between the heart rates determined from these two signals was 0.998 (std. dev. 0.001).
心率是一项基本的健康指标,在临床测量和家庭医疗保健中都很有用。当前的家庭护理系统通常需要将电极或其他传感器附着在身体上,这对患者来说可能很麻烦。此外,一些测量对运动伪影敏感,不便于用户使用,并且需要专门的监督。本文提出了一种用于站立受试者心率测量的新技术,该技术基于足底生物阻抗测量,类似于一些用于身体成分分析的浴室体重秤所进行的测量。由于与心脏相关的阻抗变化水平较低,测量系统具有1400的增益。我们实现了一个全差分交流放大器,在10 kHz时共模抑制比(CMRR)为105 dB。基于同步采样的相干解调产生的信噪比(SNR)为55 dB。该系统的灵敏度为1.9 V/Ω。该技术已在18名志愿者身上得到验证,同时测量了他们的生物阻抗信号和心电图以验证结果。从这两个信号确定的心率之间的平均互相关系数为0.998(标准差0.001)。