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An inverse approach to determining spatially varying arterial compliance using ultrasound imaging

机译:使用超声成像确定空间变化的动脉顺应性的逆方法

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摘要

The mechanical properties of arteries are implicated in a wide variety of cardiovascular diseases, many of which are expected to involve a strong spatial variation in properties that can be depicted by diagnostic imaging. A pulse wave inverse problem (PWIP) is presented, which can produce spatially resolved estimates of vessel compliance from ultrasound measurements of the vessel wall displacements. The 1D equations governing pulse wave propagation in a flexible tube are parameterized by the spatially varying properties, discrete cosine transform components of the inlet pressure boundary conditions, viscous loss constant and a resistance outlet boundary condition. Gradient descent optimization is used to fit displacements from the model to the measured data by updating the model parameters. Inversion of simulated data showed that the PWIP can accurately recover the correct compliance distribution and inlet pressure under realistic conditions, even with severe simulated measurement noise. Silicone phantoms with known compliance contrast were imaged with a clinical ultrasound system .The PWIP produced spatially and quantitatively accurate maps of the phantom compliance compared to independent static property estimates, and the known locations of stiff inclusions (which were as small as 7mm). The PWIP is necessary for these phantom experiments as the spatiotemporal resolution, measurement noise and compliance contrast does not allow accurate tracking of the pulse wave velocity using traditional approaches (e.g. 50% upstroke markers). Results from simulated data suggest reflections generated from material interfaces may negatively affect wave velocity estimates, whereas these reflections are accounted for in the PWIP and do not cause problems.
机译:动脉的机械特性与多种心血管疾病有关,其中许多疾病涉及可通过诊断成像描述的特性方面的强烈空间变化。提出了一种脉波逆问题(PWIP),该问题可以根据血管壁位移的超声测量结果得出血管顺应性的空间分辨估计。通过空间变化特性,入口压力边界条件的离散余弦变换分量,粘性损耗常数和电阻出口边界条件,对控制挠性管中脉冲波传播的一维方程进行参数化。梯度下降优化用于通过更新模型参数来拟合从模型到测量数据的位移。对模拟数据的反演表明,即使存在严重的模拟测量噪声,PWIP仍可以在实际条件下准确恢复正确的顺应性分布和进口压力。使用临床超声系统对具有已知顺应性对比的硅树脂体模进行成像。与独立的静态特性估计值相比,PWIP可以生成空间和定量准确的体模顺应性图,以及已知的坚硬夹杂物位置(小至7mm)。对于这些幻象实验,PWIP是必需的,因为时空分辨率,测量噪声和顺应性对比度不允许使用传统方法(例如,上行程标记为50%)准确跟踪脉搏波速度。模拟数据的结果表明,材料界面产生的反射可能会对波速估计产生负面影响,而这些反射是在PWIP中考虑的,不会造成问题。

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