Pandey Vinod K, Pandey Prem C, Burkule Nitin J, Subramanyan L R
Department of Electrical Engineering, Indian Institute of Technology Bombay, Powai Mumbai, 400 076, Maharashtra, India.
Annu Int Conf IEEE Eng Med Biol Soc. 2011;2011:7932-6. doi: 10.1109/IEMBS.2011.6091956.
Impedance cardiography is a noninvasive technique, based on sensing the variation in the electrical impedance of the thorax caused by variation in the blood volume during the cardiac cycle, for monitoring the stroke volume and some other cardiovascular indices. Respiratory and motion artifacts cause baseline drift in the sensed impedance waveform, particularly during or after exercise. This paper presents an LMS-based adaptive filtering technique for suppression of respiratory artifact for improving the estimation of the indices without smearing the beat-to-beat variations. It uses a reference signal, closely related to the respiratory artifact, obtained by a least-squares approximation based B-spline fitting on the contaminated impedance cardiogram in synchronism with the respiratory phases. The technique is evaluated on signals with simulated artifacts and on signals from nine healthy subjects and five patients with cardiovascular disorders. The values of the stroke volume, estimated on beat-to-beat basis, after suppression of respiratory artifact showed a good agreement with those from Doppler echocardiography.
阻抗心动图是一种非侵入性技术,基于感知心动周期中血容量变化引起的胸部电阻抗变化,用于监测每搏输出量和其他一些心血管指标。呼吸和运动伪影会导致所感测的阻抗波形出现基线漂移,尤其是在运动期间或运动后。本文提出了一种基于最小均方(LMS)的自适应滤波技术,用于抑制呼吸伪影,以在不模糊逐搏变化的情况下改善指标估计。它使用一个与呼吸伪影密切相关的参考信号,该信号通过基于最小二乘近似的B样条拟合,在与呼吸相位同步的受污染阻抗心动图上获得。该技术在带有模拟伪影的信号以及来自九名健康受试者和五名心血管疾病患者的信号上进行了评估。在抑制呼吸伪影后逐搏估计的每搏输出量值与多普勒超声心动图测得的值显示出良好的一致性。