Brands P J, Hoeks A P, Rutten M C, Reneman R S
Department of Biophysics, Cardiovascular Research Institute of Maastricht, University of Limburg, The Netherlands.
Ultrasound Med Biol. 1996;22(7):895-905. doi: 10.1016/0301-5629(96)00082-8.
Vascular impedance is defined as the ratio between the frequency components of the local blood pressure waveform and those of the local blood volume flow waveform. Assessment of vascular impedance is, for example, important to study heart load and distal vascular bed vasomotricity. However, only a few studies on vascular impedance have been performed in humans because pulsatile pressure and volume flow waveforms, simultaneously recorded at the same location, are difficult to obtain noninvasively. The noninvasive assessment of arterial impedance as described in this study is based on the replacement of the pressure waveform by the distension (change in diameter) waveform and the volume flow waveform by the center-line blood flow velocity waveform. Both waveforms can simultaneously and accurately be assessed by means of pulsed ultrasound. It will be shown that, depending on the Womersley number, the volume flow waveform may be replaced by the center-line blood flow velocity waveform for a given frequency range and that the pressure waveform may be replaced by the distension waveform for a wide frequency range. The validation of the proposed ultrasound method was performed through an in vitro study in a flow model with a distensible tube terminated with a hydraulic load (modified windkessel model). It is shown that, in vitro, the proposed method gives the same results as the local spectral pressure-flow relationship.
血管阻抗定义为局部血压波形的频率成分与局部血容量流动波形的频率成分之比。例如,血管阻抗评估对于研究心脏负荷和远端血管床血管舒缩功能很重要。然而,由于难以无创地同时获取在同一位置记录的搏动性压力和容量流动波形,因此在人体中进行的血管阻抗研究很少。本研究中所述的动脉阻抗无创评估基于用扩张(直径变化)波形替代压力波形,并用中心线血流速度波形替代容量流动波形。这两种波形均可通过脉冲超声同时且准确地进行评估。结果表明,根据沃默斯利数,在给定频率范围内,容量流动波形可用中心线血流速度波形替代,并且在很宽的频率范围内,压力波形可用扩张波形替代。通过在带有液压负载(改进的风箱模型)的可扩张管的流动模型中进行体外研究,对所提出的超声方法进行了验证。结果表明,在体外,所提出的方法与局部频谱压力-流量关系给出相同的结果。