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Cardiac ultrasound motion detection by elastic registration exploiting temporal coherence

机译:利用时间相干性通过弹性配准进行心脏超声运动检测

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We propose a new global registration method for estimating the cardiac displacement field in 2D sequences of ultrasound images of the heart. The basic idea is to select a reference frame (e.g., the first image of a cycle) and to map each image in the sequence to it using elastic deformation. What makes our method specific is the use of a semi-local parametric model of the deformation (spatio-temporal spline), and the reformulation of the registration task as a global spatio-temporal optimization problem. The scale of the spline model controls the smoothness of the displacement field. Our algorithm uses a multiresolution optimization strategy for higher speed and robustness. We validated the accuracy of our algorithm by applying it to a synthetic sequence; this one heart-cycle test sequence was generated by deforming a reference frame according to a realistic motion model and by adding random noise to it. Finally, we present results on real data from normal and pathological subjects to illustrate the clinical applicability of our method.
机译:我们提出了一种新的全局配准方法,用于估计心脏超声图像的2D序列中的心脏位移场。基本思想是选择一个参考系(例如,一个周期的第一幅图像),并使用弹性变形将序列中的每个图像映射到它。使我们的方法具体化的是使用变形的半局部参数模型(时空样条),以及将配准任务重新制定为全局时空优化问题。样条曲线模型的比例控制着位移场的平滑度。我们的算法使用多分辨率优化策略来提高速度和鲁棒性。通过将其应用于合成序列,我们验证了算法的准确性;通过根据实际运动模型使参考框架变形并向其添加随机噪声来生成此一个心动周期测试序列。最后,我们提出了来自正常和病理受试者的真实数据的结果,以说明我们方法的临床适用性。

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