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首页> 外文期刊>Biomedical Engineering, IEEE Transactions on >A Clinically Applicable Stochastic Approach for Noninvasive Estimation of Aortic Stiffness Using Computed Tomography Data
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A Clinically Applicable Stochastic Approach for Noninvasive Estimation of Aortic Stiffness Using Computed Tomography Data

机译:使用计算机断层扫描数据对主动脉僵硬度进行无创估计的临床随机方法

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摘要

The degeneration of the vascular wall tissue induces a change of the arterial stiffness, i.e., the capability of the vessel to distend under the pulsatile hemodynamic load. In the literature, the aortic stiffness is usually computed following a simple deterministic approach, in which only the maximum and the minimum values of arterial diameter and blood pressure over the cardiac cycle are considered. In this paper, we propose a stochastic approach to assess the stiffness, and its spatial variation, of a given aortic region exploiting patient-specific geometrical data derived from computed tomography angiography (CTA). In particular, the arterial stiffness is computed linking the aortic kinematic information derived from CTA with pressure waveforms, generated using a lumped parameter model of the arterial circulation. The proposed method is able to include the uncertainty of the input variables as well as to use the entire diameter and blood pressure waveforms over the cardiac cycle rather than only their maximum and minimum values. Although the efficiency and accuracy of the proposed method are tested on a single patient-specific case, the proposed approach is powerful and already possesses the ability to evaluate regional changes of stiffness in human aorta using noninvasive data. The final objective of our paper is to support the adoption of techniques such as CTA as a standard tool for diagnosis and treatment planning of aortic diseases.
机译:血管壁组织的退化引起动脉僵硬度的改变,即,在脉动性血液动力负荷下血管扩张的能力。在文献中,通常按照简单的确定性方法来计算主动脉刚度,其中仅考虑整个心动周期中动脉直径和血压的最大值和最小值。在本文中,我们提出了一种随机方法来评估给定主动脉区域的硬度及其空间变化,这是利用从计算机断层摄影血管造影(CTA)得出的患者特定几何数据进行的。特别是,将使用CTA得出的主动脉运动信息与压力波形联系起来,计算动脉刚度,该压力波形是使用动脉循环集总参数模型生成的。所提出的方法能够包括输入变量的不确定性,以及使用整个心动周期的整个直径和血压波形,而不仅是它们的最大值和最小值。尽管在单个患者特定情况下测试了所提出方法的效率和准确性,但所提出的方法功能强大,并且已经具备使用非侵入性数据评估人主动脉僵硬区域变化的能力。本文的最终目标是支持采用CTA等技术作为主动脉疾病诊断和治疗计划的标准工具。

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