Zagar T, Krizaj D
University of Ljubljana, Faculty of Electrical Engineering, Trzaska cesta 25, SI-1000 Ljubljana, Slovenia.
Physiol Meas. 2007 Aug;28(8):N57-65. doi: 10.1088/0967-3334/28/8/N03. Epub 2007 Jul 30.
The performance of a monolithic instrumentation amplifier used as an interface for a four-electrode bioimpedance measurement is examined with a commercially available impedance meter based on an auto-balancing bridge. The errors due to particularities in the input stage of the impedance meter, when used without a front-end, were several orders of magnitude higher than the measured quantity. The analysis was performed on an electrical circuit model of the skin and electrodes over a frequency range of 20 Hz to 1 MHz. The achieved accuracy with balanced electrode impedances for the frequencies up to 100 kHz can be below 0.2% for impedance magnitude and 0.1 degrees for impedance phase, which is within the specified basic accuracy range of the LCR-meter used for the measurements. At frequencies above 100 kHz the errors are increasing and are higher than the LCR-meter's basic accuracy. This study indicates that use of an instrumentation amplifier as a front-end with the particular LCR-meter can significantly improve the measurement accuracy of the four-electrode bioimpedance measurement at low frequencies.
使用基于自动平衡电桥的商用阻抗计,对用作四电极生物阻抗测量接口的单片仪表放大器的性能进行了研究。在不使用前端的情况下使用阻抗计时,由于其输入级的特殊性导致的误差比测量值高几个数量级。在20 Hz至1 MHz的频率范围内,对皮肤和电极的电路模型进行了分析。对于高达100 kHz的频率,当电极阻抗平衡时,实现的精度在阻抗幅值方面可低于0.2%,在阻抗相位方面可低于0.1度,这在用于测量的LCR计指定的基本精度范围内。在高于100 kHz的频率下,误差会增加且高于LCR计的基本精度。本研究表明,将仪表放大器用作特定LCR计的前端,可以显著提高低频下四电极生物阻抗测量的精度。