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基于非线性脉搏波理论应用于四肢的无创血流动力学诊断。

Non-invasive hemodynamic diagnosis based on non-linear pulse wave theory applied to four limbs.

作者信息

Song Xiaorui, Liu Yi, Wang Sirui, Zhang Honghui, Qiao Aike, Wang Xuezheng

机构信息

School of Radiology, Shandong First Medical University and Shandong Academy of Medical Sciences, Tai'an, China.

Department of Ultrasound, Taian Maternity and Child Health Care Hospital, Tai'an, China.

出版信息

Front Bioeng Biotechnol. 2023 Mar 9;11:1081447. doi: 10.3389/fbioe.2023.1081447. eCollection 2023.

Abstract

Hemodynamic diagnosis indexes (HDIs) can comprehensively evaluate the health status of the cardiovascular system (CVS), particularly for people older than 50 years and prone to cardiovascular disease (CVDs). However, the accuracy of non-invasive detection remains unsatisfactory. We propose a non-invasive HDIs model based on the non-linear pulse wave theory (NonPWT) applied to four limbs. This algorithm establishes mathematical models, including pulse wave velocity and pressure information of the brachial and ankle arteries, pressure gradient, and blood flow. Blood flow is key to calculating HDIs. Herein, we derive blood flow equation for different times of the cardiac cycle considering the four different distributions of blood pressure and pulse wave of four limbs, then obtain the average blood flow in a cardiac cycle, and finally calculate the HDIs. The results of the blood flow calculations reveal that the average blood flow in the upper extremity arteries is 10.78 ml/s (clinically: 2.5-12.67 ml/s), and the blood flow in the lower extremity arteries is higher than that in the upper extremity. To verify model accuracy, the consistency between the clinical and calculated values is verified with no statistically significant differences ( < 0.05). Model IV or higher-order fitting is the closest. To verify the model generalizability, considering the risk factors of cardiovascular diseases, the HDIs are recalculated using model IV, and thus, consistency is verified ( < 0.05 and Bland-Altman plot). We conclude our proposed algorithmic model based on NonPWT can facilitate the non-invasive hemodynamic diagnosis with simpler operational procedures and reduced medical costs.

摘要

血流动力学诊断指标(HDIs)可以全面评估心血管系统(CVS)的健康状况,尤其适用于50岁以上且易患心血管疾病(CVDs)的人群。然而,无创检测的准确性仍不尽人意。我们提出了一种基于非线性脉搏波理论(NonPWT)应用于四肢的无创HDIs模型。该算法建立了数学模型,包括肱动脉和踝动脉的脉搏波速度和压力信息、压力梯度以及血流。血流是计算HDIs的关键。在此,我们考虑四肢血压和脉搏波的四种不同分布,推导心动周期不同时刻的血流方程,然后获得心动周期内的平均血流,最后计算HDIs。血流计算结果表明,上肢动脉的平均血流为10.78 ml/s(临床上:2.5 - 12.67 ml/s),下肢动脉的血流高于上肢。为验证模型准确性,对临床值与计算值之间的一致性进行验证,差异无统计学意义(< 0.05)。IV型或更高阶拟合最为接近。为验证模型的通用性,考虑心血管疾病的危险因素,使用IV型模型重新计算HDIs,从而验证了一致性(< 0.05和布兰德 - 奥特曼图)。我们得出结论,基于NonPWT提出的算法模型可以通过更简单的操作程序和降低医疗成本来促进无创血流动力学诊断。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a562/10033961/f2278718b159/fbioe-11-1081447-g001.jpg

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