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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Application of continuum theory and multi-grid methods to motion evaluation from 3D echocardiography
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Application of continuum theory and multi-grid methods to motion evaluation from 3D echocardiography

机译:连续理论和多网格方法在3D超声心动图运动评估中的应用

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摘要

As the motion of the heart is a 3D phenomenon, its evaluation from sequences of 2D images causes a great loss of information on the motion itself. Our aim is therefore to process real 3D echocardiographic images and to carry out an automatic way of evaluating the movements of the cardiac structures. To estimate the optical flow, a mathematical model based on the continuum theory is used; echocardiographic images can indeed be considered a function of a conserved quantity (the acoustic impedance). Since we need to calculate the velocity vector for every point in the image and every image is built with more than 2 million voxels (128/spl times/128/spl times/128), we implement a multigrid relaxation method to accelerate the computation of an approximate solution otherwise too slow with a simple iterative solver. The experiments on simulated velocity fields have demonstrated an effective speed-up in the evaluation of motion, and the calculation on real echo images has given a realistic estimation of the 3D dynamics of the heart.
机译:由于心脏的运动是3D现象,因此从2D图像序列进行的评估会导致有关运动本身的大量信息丢失。因此,我们的目标是处理真实的3D超声心动图图像,并执行评估心脏结构运动的自动方法。为了估计光流,使用了基于连续性理论的数学模型。实际上,可以将超声心动图图像视为保守量(声阻抗)的函数。由于我们需要计算图像中每个点的速度矢量,并且每个图像都构建有超过200万个体素(128 / spl次/ 128 / spl次/ 128),因此我们采用了多网格松弛方法来加速计算速度。一个近似的解决方案,否则使用简单的迭代求解器会太慢。在模拟速度场上进行的实验表明,在评估运动方面可以有效提高速度,而在实际回波图像上进行的计算可以对心脏的3D动态做出逼真的估算。

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