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使用带状电极和区域电极在仰卧位、坐位及运动期间进行的阻抗心动图检查。

Impedance cardiography using band and regional electrodes in supine, sitting, and during exercise.

作者信息

Patterson R P, Wang L, Raza S B

机构信息

Department of Physical Medicine, University of Minnesota, Minneapolis 55455.

出版信息

IEEE Trans Biomed Eng. 1991 May;38(5):393-400. doi: 10.1109/10.81557.

Abstract

The electrical impedance and its first derivative (dZ/dt) were measured at 100 kHz on 10 normal males in supine, sitting, and during upright bicycle exercise in order to compare the contribution of regional electrodes to the standard band electrode signal and to evaluate the possible use of spot electrodes for stroke volume (SV) measurements. Simultaneous measurements were made from band electrodes placed around the neck and lower thorax and from spot electrodes which recorded signals from the neck, upper thorax, and lower thorax. The results showed that approximately equal parts of the dZ/dt waveform came from the neck and upper thorax with the lower thorax contribution small but providing important features of the band signal. Changing from supine to sitting showed percentage decreases of 35% and 46% for the band and neck signals, respectively, with an increase of 19% for the upper thorax signal. The percentage increases in SV with upright exercise were 34%, 52%, and 24% for the bands, neck, and upper thorax signals, respectively. Band signal is made up of different signals from various regions of the thorax. Its ability to predict correct changes in SV may result from some "lucky" coincidences. The use of regional electrodes will probably not give the same SV information but may be important in measuring regional activities of the central circulation.

摘要

为了比较局部电极对标准带电极信号的贡献,并评估使用点电极测量每搏输出量(SV)的可能性,对10名正常男性在仰卧位、坐位以及直立自行车运动期间,于100kHz频率下测量其电阻抗及其一阶导数(dZ/dt)。同时从置于颈部和下胸部的带电极以及记录颈部、上胸部和下胸部信号的点电极进行测量。结果表明,dZ/dt波形中约相等部分来自颈部和上胸部,下胸部的贡献较小,但提供了带电极信号的重要特征。从仰卧位变为坐位时,带电极和颈部信号分别下降了35%和46%,而上胸部信号增加了19%。直立运动时,带电极、颈部和上胸部信号的SV增加百分比分别为34%、52%和24%。带电极信号由胸部不同区域的不同信号组成。其预测SV正确变化的能力可能源于一些“幸运”的巧合。使用局部电极可能无法提供相同的SV信息,但在测量中心循环的局部活动方面可能很重要。

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