Estimation of aortic pulse wave velocity based on waveform decomposition of central aortic pressure waveform

波形 主动脉压 动脉硬化 心脏病学 血压 拐点 脉冲波速 内科学 脉冲压力 动脉树 医学 数学 主动脉 血流动力学 物理 电压 量子力学 几何学
作者
Wenyan Liu,Lisong Xu,Jinzhong Yang,Daiyuan Song,Yuelan Zhang,Guozhe Sun,Lisheng Xu,Alberto Avolio
出处
期刊:Physiological Measurement [IOP Publishing]
卷期号:42 (10): 105001-105001 被引量:2
标识
DOI:10.1088/1361-6579/ac23a7
摘要

Objective.Aortic stiffness is associated with risk of cardiovascular events. Carotid-femoral pulse wave velocity (cfPWV) is the current noninvasive gold standard for assessing aortic stiffness. However, the cfPWV measurement is challenging, requiring simultaneous signals at the carotid and femoral sites.Approach.In this study, the aortic PWV is estimated using a single radial pressure waveform and compared with cfPWV. 111 subjects' aortic PWVs are estimated from the decomposition of the derived central aortic pressure waveform based on three types of reconstructed flow waveform: the peak of triangular flow waveform based on 30% ejection time (Q30%tri), the peak of triangular flow waveform based on inflection point (Qtri), and averaged flow waveform (Qavg). The central aortic pressure waveform is derived from a radial pressure waveform via a validated transfer function.Main results.TheQavgis used for estimating aortic PWV without the determination of the peak point of the triangular flow waveforms. The estimated aortic PWV shows good agreement with cfPWV. The mean difference ± SD is 0.29 ± 1.50 m s-1(r2 = 0.29,p< 0.001) for theQ30%tri; 0.27 ± 1.40 m s-1(r2 = 0.38,p < 0.001) for theQtri; 0.23 ± 1.39 m s-1(r2 = 0.40,p < 0.001) for theQavg. The correlation between estimated aortic PWV based onQ30%triand measured cfPWV is weak. The results ofQtriandQavgshow no obvious difference.Significance.The proposed method can be used as a less complex way than conventional measurement of cfPWV to further assess arterial stiffness and predict cardiovascular risks or events.
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