首页> 外文会议>Ultrasonics Symposium (IUS), 2008 IEEE >Combining edge detection with speckle-tracking for cardiac strain assessment in 3D echocardiography
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Combining edge detection with speckle-tracking for cardiac strain assessment in 3D echocardiography

机译:在3D超声心动图中将边缘检测与斑点跟踪相结合以评估心脏应变

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In this paper, we extend a computationally efficient framework for tracking of deformable subdivision surfaces in 3D echocardiography with speckle-tracking measurements to track material points. Tracking is performed in a sequential state-estimation fashion, using an extended Kalman filter to update a subdivision surface in a two-step process: Edge-detection is first performed to update the model for changes in shape and position, followed by a second update based on displacement vectors from speckle-tracking with 3D block-matching. The latter speckle-tracking update will only have to correct for residual deformations after edge-detection. This both leads to increased accuracy and computational efficiency compared to usage of speckle-tracking alone. Automatic tracking is demonstrated in a 3D echocardiography simulation of an infarcted ventricle. The combination of edgedetection and speckle-tracking consistently improved tracking accuracy (RMS 0.483, 0.433, 0.511 mm in X,Y,Z) compared to speckle-tracking alone (RMS 0.663, 0.439, 0.613 mm). It also improved the qualitative agreement for color-coded strain meshes to ground truth, and more clearly identified the infarcted region.
机译:在本文中,我们扩展了一种有效的计算框架,该框架可通过斑点跟踪测量来跟踪3D超声心动图中的可变形细分表面,以跟踪材料点。跟踪以顺序状态估计的方式执行,使用扩展的卡尔曼滤波器以两步过程更新细分表面:首先执行边缘检测以更新模型的形状和位置变化,然后进行第二次更新基于斑点跟踪和3D块匹配的位移矢量。后者的斑点跟踪更新将只需要校正边缘检测后的残留变形即可。与仅使用散斑跟踪相比,这两者都可以提高准确性和计算效率。在梗塞心室的3D超声心动图仿真中演示了自动跟踪。与单独的斑点跟踪(RMS 0.663、0.439、0.613 mm)相比,边缘检测和斑点跟踪的组合始终提高了跟踪精度(X,Y,Z中的RMS 0.483、0.433、0.511 mm)。它还提高了用颜色编码的应变网格的定性一致性,以符合地面真相,并更清楚地识别了梗塞区域。

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