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Correction of change in propagation time delay of pulse wave during flow-mediated dilation in ultrasonic measurement of arterial wall viscoelasticity

机译:超声测量动脉壁粘弹性时流量介导的扩张过程中脉搏波传播时延变化的校正

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摘要

It is considered that the endotheliaf dysfunction occurs in the initial step of atherosclerosis. Although assessments of the endothelial function and viscoelastic properties of the intima-media region are important for the diagnosis of early-stage atherosclerosis, regional viscoelasticity has not yet been measured in vivo. Our group has developed an ultrasonic method for measuring the transient change in viscoelasticity during flow-mediated dilation (FMD). However, in this method, the stress (blood pressure) and strain of the intima-media region of the radial artery are measured in different arms, and the change in pulse wave velocity (PWV) due to FMD has not yet been considered. In the present study, we measured blood pressure waveforms using two pressure sensors, which were placed along the same radial artery for the ultrasonic measurement, to obtain blood pressure waveforms and estimate the PWV between the two sensors. Using the measured PWV, the pulse wave propagation time from the pressure sensor to the position of the ultrasound probe was corrected, and viscoelasticity was estimated from the corrected stress-strain relationship. In the basic experiment, we applied the proposed method to a silicone tube phantom and evaluated the accuracy of the estimation of viscoelasticity by comparing the ultrasonic measurement to the results of the tensile test. In the in vivo measurements, the change in the propagation time delay of the pulse wave was also corrected using the two pressure sensors and the stress-strain relationship of the radial arterial wall was then obtained to estimate viscoelasticity. Furthermore, a decrease in elasticity owing to FMD after recirculation was clearly observed, and the unstable temporal variation in viscosity was significantly reduced. These results demonstrated the improvement in the accuracy of the measurement of viscoelasticity by the proposed method.
机译:认为内皮功能障碍发生在动脉粥样硬化的初始阶段。尽管对内膜中层区域的内皮功能和粘弹性的评估对于早期动脉粥样硬化的诊断很重要,但尚未在体内测量区域粘弹性。我们的小组开发了一种超声方法,用于测量流介导的扩张(FMD)过程中粘弹性的瞬态变化。然而,在该方法中,在不同的臂中测量the动脉的内膜-中部区域的应力(血压)和应变,并且尚未考虑由于FMD引起的脉搏波速度(PWV)的变化。在本研究中,我们使用沿着同一sensors动脉放置两个压力传感器进行超声波测量的血压波形,以获取血压波形并估算两个传感器之间的PWV。使用测得的PWV,校正从压力传感器到超声波探头的位置的脉搏波传播时间,并根据校正后的应力-应变关系来估计粘弹性。在基础实验中,我们将提出的方法应用于硅胶管体模,并通过将超声测量结果与拉伸测试结果进行比较,评估了粘弹性估计的准确性。在体内测量中,还使用两个压力传感器校正了脉搏波传播时间延迟的变化,然后获得了art动脉壁的应力-应变关系以估计粘弹性。此外,清楚地观察到再循环后由于FMD引起的弹性降低,并且显着降低了粘度的不稳定的时间变化。这些结果证明了所提出的方法在粘弹性测量精度上的改进。

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  • 来源
    《Japanese journal of applied physics》 |2014年第7s期|07KF03.1-07KF03.6|共6页
  • 作者单位

    Graduate School of Biomedical Engineering, Tohoku University, Sendai 980-8579, Japan;

    Graduate School of Biomedical Engineering, Tohoku University, Sendai 980-8579, Japan,Graduate School of Engineering, Tohoku University, Sendai 980-8579, Japan;

    Graduate School of Biomedical Engineering, Tohoku University, Sendai 980-8579, Japan,Graduate School of Engineering, Tohoku University, Sendai 980-8579, Japan;

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