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从二维超声心动图重建心脏速度场。

Restoration of the velocity field of the heart from two-dimensional echocardiograms.

机构信息

Inst. de Genie Biomed., Ecole Polytech., Montreal, Que.

出版信息

IEEE Trans Med Imaging. 1989;8(2):143-53. doi: 10.1109/42.24862.

Abstract

A method to quantify the motion of the heart from digitized sequences of two-dimensional echocardiograms (2-D) echos was recently proposed. This method computes on every point of the 2-D echoes, the 2-D apparent velocity vector (or optical flow) which characterizes its interframe motion. However, further analysis is required to determine what part of this motion is due to translation, rotation, contraction, and deformation of the myocardium. A method to locally obtain this information is presented. The proposed method assumes that the interframe velocity field U(xy), V(x,y) can be locally described by linear equations in the form U(x,y)=a+Ax+By; V(x,y)=b+Cx+Dy. The additional constraint was introduced in the computation of the local velocity field by the method of projections onto convex sets. Since this constraint is only valid locally, the myocardium must be first divided into sectors and the velocity fields computed independently for each sector.

摘要

最近提出了一种从二维超声心动图(2-D)回波的数字化序列中定量心脏运动的方法。该方法在 2-D 回波的每个点上计算二维表观速度向量(或光流),其特征在于其帧间运动。然而,需要进一步分析以确定该运动的哪一部分是由于心肌的平移、旋转、收缩和变形引起的。提出了一种局部获取此信息的方法。所提出的方法假设帧间速度场 U(xy),V(x,y)可以用以下形式的线性方程在局部描述:U(x,y)=a+Ax+By;V(x,y)=b+Cx+Dy。通过凸集投影法在局部速度场的计算中引入了附加约束。由于该约束仅在局部有效,因此必须首先将心肌划分为扇区,并为每个扇区独立计算速度场。

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