College of Medicine and Biological Information Engineering, Northeastern University, Shenyang, China.
Engineering Research Center of Medical Imaging and Intelligent Analysis, Ministry of Education, Shenyang, China.
Sci Rep. 2022 Mar 25;12(1):5147. doi: 10.1038/s41598-022-09256-z.
Arterial stiffness, as measured by pulse wave velocity, for the early non-invasive screening of cardiovascular disease is becoming ever more widely used and is an independent prognostic indicator for a variety of pathologies including arteriosclerosis. Carotid-femoral pulse wave velocity (cfPWV) is regarded as the gold standard for aortic stiffness. Existing algorithms for cfPWV estimation have been shown to have good repeatability and accuracy, however, further assessment is needed, especially when signal quality is compromised. We propose a method for calculating cfPWV based on a simplified tube-load model, which allows for the propagation and reflection of the pulse wave. In-vivo cfPWV measurements from 57 subjects and numerical cfPWV data based on a one-dimensional model were used to assess the method and its performance was compared to three other existing approaches (waveform matching, intersecting tangent, and cross-correlation). The cfPWV calculated using the simplified tube-load model had better repeatability than the other methods (Intra-group Correlation Coefficient, ICC = 0.985). The model was also more accurate than other methods (deviation, 0.13 ms) and was more robust when dealing with noisy signals. We conclude that the determination of cfPWV based on the proposed model can accurately and robustly evaluate arterial stiffness.
脉搏波速度(PWV)作为动脉僵硬度的一种测量方法,用于心血管疾病的早期无创筛查,应用越来越广泛,是动脉硬化等多种病理情况的独立预后指标。颈股脉搏波速度(cfPWV)被认为是主动脉僵硬度的金标准。现有的 cfPWV 估算算法具有良好的可重复性和准确性,但需要进一步评估,尤其是在信号质量受到影响时。我们提出了一种基于简化管载模型的 cfPWV 计算方法,该方法允许脉搏波的传播和反射。我们使用 57 名受试者的体内 cfPWV 测量值和基于一维模型的数值 cfPWV 数据来评估该方法,并将其性能与其他三种现有方法(波形匹配、切线相交和互相关)进行比较。使用简化管载模型计算的 cfPWV 比其他方法具有更好的可重复性(组内相关系数 ICC=0.985)。该模型也比其他方法更准确(偏差 0.13ms),在处理噪声信号时更稳健。我们得出结论,基于所提出模型的 cfPWV 测定可以准确、稳健地评估动脉僵硬度。