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Limitations and pitfalls of non-invasive measurement of arterial pressure wave reflections and pulse wave velocity

机译:无创测量动脉压力波反射和脉搏波速度的局限性和陷阱

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摘要

In this paper, we briefly revise some of the most widely applied methods to non-invasively assess pressure wave reflection (augmentation index) and arterial stiffness (pulse wave velocity; PWV) in clinical vascular research. It is clear that the pressure waveform alone provides insufficient information to accurately quantify the magnitude of pressure wave reflection or to even fully interpret its nature. A major difficulty arises from the identification of timing of return of the reflected pressure wave, the "fiducial" point, and incorrect assessment of this point has an effect on all of the derived parameters. From our studies, it also follows that the use of an approximated flow waveform has little or no added value to assess magnitude of wave reflection. As for PWV, carotid-femoral pulse wave velocity is currently considered as the gold standard method, although accurate assessment of travel distance remains ambiguous. New methods have also been suggested for the assessment of PWV, relying on the concept that the pressure wave is composed of one single forward wave and one single reflected wave, originating from a single reflection site. This simple conceptual scheme is no more than a paradigm for a complex physical reality of wave transmission and continuous reflections in a complex branching network of elastic vessels and the accuracy of these methods is very limited. As such, the benefit of the ease of use of these methods should be weighted against the desired accuracy and reliability.
机译:在本文中,我们简要修改了一些最广泛应用的方法,以无创地评估临床血管研究中的压力波反射(增强指数)和动脉僵硬度(脉搏波速度; PWV)。显然,仅压力波形无法提供足够的信息来准确量化压力波反射的幅度,甚至无法完全解释其性质。主要困难来自于确定反射压力波返回的时间点,“基准”点,并且对该点的不正确评估会影响所有导出的参数。从我们的研究中还可以得出,使用近似的流动波形几乎没有附加值来评估波反射的幅度。对于PWV,尽管行进距离的准确评估仍然模棱两可,但颈动脉股脉波速度目前被认为是金标准方法。还提出了一种新的评估PWV的方法,其依据是压力波由一个单一的反射波​​和一个单一的正向波和一个单一的反射波​​组成。这个简单的概念方案只不过是复杂的弹性波分支网络中的波传输和连续反射的复杂物理现实的范例,这些方法的准确性非常有限。因此,应将这些方法易于使用的好处与所需的准确性和可靠性进行权衡。

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