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Assessment of human instantaneous arterial diameter using B-mode ultrasound imaging and artificial neural networks: Determination of wall mechanical properties

机译:使用B型超声成像和人工神经网络评估人体瞬时动脉直径:壁力学性能的测定

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Wall artery viscoelastic properties (WAVP) are correlated with structural and functional state of the arterial system. An accurate estimation of these properties is achieved measuring wall instantaneous diameter and pressure signals. The aim of this work was to evaluate a new non invasive estimation method of the instantaneous arterial diameter (D), and consequently, WAVP. Ten common carotid arteries of hypertensive men were evaluated. D was calculated by using B-mode ultrasonic imaging and specialized software designed with Artificial Neural Networks. Instantaneous arterial pressure of all subjects was measured by piezoelectric tonometry. Arterial wall properties were evaluated using a linear autoregressive with exogenous input model. The new method, which determinates the arterial diameter, was compared respect to a specialized and previously validated method. Results showed no significant differences in all parameters derived of D (Bland & Altman test) and no differences in all the wall arterial mechanic indexes (p>0.05). For these reasons, the developed software based on Artificial Neural Networks was successful in determining the parameters associated with arterial diameters and it opens up the possibility of real time calculations of arterial wall mechanical properties because of its simplicity.
机译:壁动脉粘弹性(WAVP)与动脉系统的结构和功能状态相关。通过测量壁的瞬时直径和压力信号,可以对这些特性进行准确的估算。这项工作的目的是评估瞬时动脉直径(D)以及因此的WAVP的新的非侵入性估计方法。评估了高血压男性的十条颈总动脉。 D是通过使用B型超声成像和由人工神经网络设计的专用软件来计算的。通过压电眼压计测量所有受试者的瞬时动脉压。使用线性自回归与外源输入模型评估动脉壁特性。确定动脉直径的新方法与专门的且经过验证的方法进行了比较。结果显示,D的所有参数(Bland和Altman检验)均无显着差异,而所有壁动脉力学指标也无差异(p> 0.05)。由于这些原因,基于人工神经网络的开发软件成功地确定了与动脉直径相关的参数,并且由于其简单性,开辟了实时计算动脉壁力学性能的可能性。

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