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Impact of Heart Rate on Ventilation and Pulmonary Perfusion Associated Impedance Changes

机译:心率对通气和肺灌注相关阻抗变化的影响

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The potential of electrical impedance tomography (EIT) to assess perfusion changes in the lung has already been demonstrated in several studies. Methods like frequency domain filtering, principal component analysis or breath holding have been introduced. Since EIT is noninvasive and radiation-free, it depicts a promising supplement to current methods such as single photon emission computed tomography. In our study we investigated ventilation and pulmonary perfusion associated impedance changes as a function of heart rate in four healthy spontaneously breathing subjects. EIT measurements were conducted during physical exercises on a bicycle ergometer to get various heart rates. EIT data were acquired at three to four different heart rates in the 3rd and 5th intercostal space (ICS), respectively. Spirometry was performed simultaneously to determine tidal ventilation. A Fast Fourier Transform and frequency domain filtering were applied to separate ventilation from pulmonary perfusion signals. Ratios of ventilation and pulmonary perfusion related impedance changes △IV/△IQ were calculated in a predefined region of interest within the different thorax planes. All subjects showed a higher gain in △IV/△IQ dependent on heart rate in the 3rd ICS than in the 5th ICS. It was observed that in all subjects pulmonary perfusion associated impedance amplitudes increased stronger in the 5th ICS compared to the 3rd ICS. Minute volumes determined by spirometry (MV_(spiro)) featured similar trends like minute variations calculated with ventilation related impedance amplitudes (MV_(EIT)). EIT measurements could reliable conducted on spontaneously breathing subjects during physical exercises. Separation of ventilation and pulmonary perfusion associated impedance changes was successfully achieved by frequency domain filtering within the different thorax planes for all subjects.
机译:在几项研究中已经证明了用于评估肺部灌注变化的电阻抗断层扫描(EIT)的潜力。方法介绍了频域滤波,主要成分分析或呼吸保持等方法。由于EIT是非侵入性和无辐射的,因此它描绘了对当前方法的有望补充,例如单光子发射计算机断层扫描。在我们的研究中,我们调查了通风和肺灌注相关的阻抗随着四种健康自发呼吸受试者的心率而变化。在自行车测力计上的体育锻炼期间进行了EIT测量,以获得各种心率。分别在第三和第五肋间(ICS)中的三到四个不同的心率下获得了EIT数据。同时进行肺活量测定法以确定潮气通气。应用快速傅里叶变换和频域滤波,以与肺灌注信号分开通气。通气率和肺灌注相关阻抗的比例△IV/△IQ在不同的胸部平面内的预定感兴趣区域中计算。所有受试者依赖于第3 IC的心率比第5 IC在第3 IC中的心率较高。观察到,与第3 IC相比,在所有受试者中,肺灌注相关的阻抗幅度在第5 IC中增加了较强的幅度。由肺活量测量法测定的微小体积(MV_(螺))精选类似的趋势,如用通风相关阻抗幅度计算的微小变形(MV_(EIT))。在体育锻炼期间,EIT测量可以在自发呼吸受试者上进行可靠。通过对所有受试者的不同胸部平面内的频域滤波成功实现了通风和肺灌注相关的阻抗变化。

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