A Thorax Simulator for Complex Dynamic Bioimpedance Measurements With Textile Electrodes.

IEEE Trans. Biomed. Circuits and Systems(2015)

引用 15|浏览6
暂无评分
摘要
Bioimpedance measurements on the human thorax are suitable for assessment of body composition or hemodynamic parameters, such as stroke volume; they are non-invasive, easy in application and inexpensive. When targeting personal healthcare scenarios, the technology can be integrated into textiles to increase ease, comfort and coverage of measurements. Bioimpedance is generally measured using two electrodes injecting low alternating currents (0.5-10 mA) and two additional electrodes to measure the corresponding voltage drop. The impedance is measured either spectroscopically (bioimpedance spectroscopy, BIS) between 5 kHz and 1 MHz or continuously at a fixed frequency around 100 kHz (impedance cardiography, ICG). A thorax simulator is being developed for testing and calibration of bioimpedance devices and other new developments. For the first time, it is possible to mimic the complete time-variant properties of the thorax during an impedance measurement. This includes the dynamic real part and dynamic imaginary part of the impedance with a peak-to-peak value of 0.2 Ω and an adjustable base impedance (24.6 Ω ≥ Z0 ≥ 51.6 Ω) . Another novelty is adjustable complex electrode-skin contact impedances for up to 8 electrodes to evaluate bioimpedance devices in combination with textile electrodes. In addition, an electrocardiographic signal is provided for cardiographic measurements which is used in ICG devices. This provides the possibility to generate physiologic impedance changes, and in combination with an ECG, all parameters of interest such as stroke volume (SV), pre-ejection period (PEP) or extracellular resistance (Re) can be simulated. The speed of all dynamic signals can be altered. The simulator was successfully tested with commercially available BIS and ICG devices and the preset signals are measured with high correlation (r = 0.996).
更多
查看译文
关键词
personal healthcare scenario,electrocardiography,health care,pre-ejection period simulation,calibration,cardiography,commercially available icg device,bioimpedance measurement coverage,fixed frequency,commercially available bis device,peak-to-peak value,adjustable complex electrode-skin contact impedance,noninvasive method,low alternating current injection,adjustable base impedance,current 0.5 ma to 10 ma,continuous bioimpedance measurement,biomedical electrodes,re simulation,bioimpedance,extracellular resistance simulation,physiologic impedance change generation,ecg,textile electrode,hemodynamic parameter assessment,bioimpedance measurement comfort,bioimpedance device calibration,dynamic imaginary impedance part,impedance cardiography,machine testing,electric impedance measurement,body composition assessment,textile electrodes,bioimpedance device testing,bioimpedance measurement ease,stroke volume simulation,simulator,bioimpedance spectroscopy,sv simulation,dynamic real impedance part,pep simulation,voltage drop measurement,spectroscopy,complex dynamic bioimpedance measurement,textile technology,dynamic signal speed alteration,human thorax bioimpedance measurement,electrocardiographic signal,frequency 5 khz to 1 mhz,impedance,complete thorax time-variant property mimicking,thorax simulator development,biomimetics,preset signal measurement correlation,haemodynamics
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要