Dydenko Igor, Jamal Fadi, Bernard Olivier, D'hooge Jan, Magnin Isabelle E, Friboulet Denis
CREATIS, UMR CNRS 5515, INSA, Bâtiment Blaise Pascal, 69621 Villeurbanne Cedex, France.
Med Image Anal. 2006 Apr;10(2):162-77. doi: 10.1016/j.media.2005.06.004. Epub 2005 Sep 13.
We describe a level set formulation using both shape and motion prior, for both segmentation and region tracking in high frame rate echocardiographic image sequences. The proposed approach uses the following steps: registration of the prior shape, level set segmentation constrained through the registered shape and region tracking. Registration of the prior shape is expressed as a rigid or an affine transform problem, where the transform minimizing a global region-based criterion is sought. This criterion is based on image statistics and on the available estimated axial motion data. The segmentation step is then formulated through front propagation, constrained with the registered shape prior. The same region-based criterion is used both for the registration and the segmentation step. Region tracking is based on the motion field estimated from the interframe level set evolution. The proposed approach is applied to high frame rate echocardiographic sequences acquired in vivo. In this particular application, the prior shape is provided by a medical expert and the rigid transform is used for registration. It is shown that this approach provides consistent results in terms of segmentation and stability through the cardiac cycle. In particular, a comparison indicates that the results provided by our approach are very close to the results obtained with manual tracking performed by an expert cardiologist on a Doppler Tissue Imaging (DTI) study. These preliminary results show the ability of the method to perform region tracking and its potential for dynamic parametric imaging of the heart.
我们描述了一种使用形状和运动先验的水平集公式,用于高帧率超声心动图图像序列中的分割和区域跟踪。所提出的方法包括以下步骤:先验形状的配准、通过配准形状约束的水平集分割以及区域跟踪。先验形状的配准表示为一个刚体或仿射变换问题,其中寻求使基于全局区域的准则最小化的变换。该准则基于图像统计和可用的估计轴向运动数据。然后通过前沿传播来制定分割步骤,并以前面配准的形状为约束。配准和分割步骤都使用相同的基于区域的准则。区域跟踪基于从帧间水平集演化估计的运动场。所提出的方法应用于体内采集的高帧率超声心动图序列。在这个特定的应用中,先验形状由医学专家提供,并且使用刚体变换进行配准。结果表明,该方法在分割方面提供了一致的结果,并且在心动周期中具有稳定性。特别是,一项比较表明,我们的方法所提供的结果与专家心脏病学家在多普勒组织成像(DTI)研究中进行手动跟踪所获得的结果非常接近。这些初步结果表明了该方法进行区域跟踪的能力及其在心脏动态参数成像方面的潜力。