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Thoracic impedance change equation deduced on the basis of parallel impedance model and Ohm's law

机译:根据平行阻抗模型和欧姆定律推导胸阻抗变化方程

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Purpose: The aim of the present study is to investigate an impedance change equation suited with the measurement of the impedance cardiograph (ICG). Methods: Based on a parallel impedance model and Ohm's law, an impedance change equation differed from Nyboer's equation is deduced. It is verified with the experiments of the impedance cardiography in 100 healthy adults. Results: This equation shows that the thoracic impedance change (Z) is directly proportional to the value of the volume change (V) of the blood vessel, to the ratio of the basic impedance to the body height (Z 0/H), while it is inversely proportional to the square of the chest circumference (C t 2). These are supported by the experimental results in the measurement of the ICG. Conclusions: The equation proposed in the present paper is coincident with the actual condition in the measurement of the ICG.
机译:目的:本研究的目的是研究适合于阻抗心电图仪(ICG)测量的阻抗变化方程。方法:基于并联阻抗模型和欧姆定律,推导了不同于尼伯尔方程的阻抗变化方程。通过100名健康成年人的阻抗心动图实验进行了验证。结果:该等式表明,胸阻抗变化(Z)与血管体积变化(V)的值成正比,与基础阻抗与身高的比率(Z 0 / H)成正比,而它与胸围的平方成反比(C t 2)。这些都得到了ICG测量中的实验结果的支持。结论:本文提出的方程与ICG测量中的实际情况相吻合。

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