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Non-Linear Model Fitting to Parameterize Diseased Blood Vessels

机译:非线性模型拟合可对病变血管进行参数化

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Accurate estimation of vessel parameters is a prerequisite for automated visualization and analysis of healthy and diseased blood vessels. The objective of this research is to estimate the dimensions of lower extremity arteries, imaged by computed tomography (CT). These parameters are required to get a good quality visualization of healthy as well as diseased arteries using a visualization technique such as curved planar reformation (CPR). The vessel is modeled using an elliptical or cylindrical structure with specific dimensions, orientation and blood vessel mean density. The model separates two homogeneous regions: Its inner side represents a region of density for vessels, and its outer side a region for background. Taking into account the point spread function (PSF) of a CT scanner, a function is modeled with a Gaussian kernel, in order to smooth the vessel boundary in the model. A new strategy for vessel parameter estimation is presented. It stems from vessel model and model parameter optimization by a nonlinear optimization procedure, i.e., the Levenberg-Marquardt technique. The method provides center location, diameter and orientation of the vessel as well as blood and background mean density values. The method is tested on synthetic data and real patient data with encouraging results.
机译:准确估计血管参数是对健康和患病血管进行自动可视化和分析的前提。这项研究的目的是估计通过计算机断层扫描(CT)成像的下肢动脉的尺寸。这些参数是使用可视化技术(例如弯曲平面重建(CPR))对健康及患病动脉进行高质量可视化所必需的。使用具有特定尺寸,方向和血管平均密度的椭圆或圆柱结构对血管建模。该模型将两个同质区域分开:其内侧代表容器的密度区域,而外侧代表背景区域。考虑到CT扫描仪的点扩散函数(PSF),该函数使用高斯核建模,以平滑模型中的血管边界。提出了一种用于船只参数估计的新策略。它源于采用非线性优化程序(即Levenberg-Marquardt技术)进行的容器模型和模型参数优化。该方法提供了血管的中心位置,直径和方向以及血液和背景平均密度值。该方法在合成数据和实际患者数据上进行了测试,结果令人鼓舞。

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