颈内静脉和中心静脉压力脉冲的频谱特征:概念研究的证明

C. Beggs, V. Tavoni, E. Menegatti, M. Tessari, R. Ragazzi, A. Malagoni, L. Giovanardi
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引用次数: 2

摘要

在这项概念验证研究中,我们评估了8名受试者的中心静脉压(CVP)对颈内静脉横截面积(CSA)和血流时间平均速度(TAV)的影响,目的是了解颈静脉脉冲的驱动因素。使用中心静脉导管测量CVP,同时使用超声获得CSA变化和TAV沿心周期。CVP、CSA和TAV时间序列信号分析显示,TAV和CSA平均滞后于CVP 0.129 s和0.138 s, CSA与TAV呈负相关(r= -0.316)。各自相关信号呈强相关(平均r=0.729-0.764),平均CSA周期为1.062 Hz。傅里叶分析表明,CVP、TAV和CSA信号的频谱以约1 Hz和2 Hz的频率为主,其中>.1 Hz的频率在CSA信号中明显衰减。由于各自信号的自相关图和周期图由相同的底层频率对齐并占主导地位,这表明它们在频域比在时域更容易解释。
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Spectral characteristics of the internal jugular vein and central venous pressure pulses: a proof of concept study
In this proof-of-concept study the impact of central venous pressure (CVP) on internal jugular veins cross-sectional area (CSA) and blood flow time-average velocity (TAV) was evaluated in eight subjects, with the aim of understanding the drivers of the jugular venous pulse. CVP was measured using a central venous catheter while CSA variation and TAV along a cardiac cycle were acquired using ultrasound. Analysis of CVP, CSA and TAV time-series signals revealed TAV and CSA to lag behind CVP by on average 0.129 s and 0.138 s, with an inverse correlation between CSA and TAV (r= –0.316). The respective autocorrelation signals were strongly correlated (mean r=0.729-0.764), with mean CSA periodicity being 1.062 Hz. Fourier analysis revealed the frequency spectrums of CVP, TAV and CSA signals to be dominated by frequencies at approximately 1 and 2 Hz, with those >1 Hz greatly attenuated in the CSA signal. Because the autocorrelograms and periodograms of the respective signals were aligned and dominated by the same underlying frequencies, this suggested that they are more easily interpreted in the frequency domain rather than the time domain.
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