两步配准方法在左心室核磁共振应变计算中的应用

Gelareh Valizadeh, F. B. Mofrad, Ahmad Shalbaf
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摘要

在受试者之间和受试者内部的研究中,在体积图像之间进行配准和寻找解剖对应的标记是普遍存在的挑战,特别是在心脏图像分析领域。另一方面,在其他功能标准中,该菌株有望识别心脏疾病早期阶段的差异。本研究旨在结合基于形状和基于强度的方法,在现有的FFD非刚性配准算法的基础上建立一种转换模型。提出了一种新的两步多分辨率非刚性ffd配准算法,利用电影mri图像测量心脏周期左心室径向应变。引入心内膜壁形状信息,将原有的基于强度的配准与基于形状的配准相结合,提高了配准精度。首先,通过两个已识别的3d地标对算法进行验证,然后应用于健康受试者和LVH患者,计算心周期期间左心室区域径向应变。对于两个解剖标志,我们提出的两步配准算法与经典配准方法相比,其估计位移与参考值的匹配更好。通过对正常和异常径向分段应变值的比较,可以看出正常和异常径向分段应变值在功能特性上存在明显差异。实验结果表明,该配准算法在点跟踪精度方面优于传统配准算法。
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A Two-step Registration Approach: Application in MRI-based Strain Calculation of the Left Ventricle
Registration and finding anatomical correspondent landmarks amongst the volumetric images in both inter and intra-subject studies are prevalent challenges, especially in the field of cardiac image analysis. On the other hand, among other functional criteria, the strain is promising to identify differences in the early stages of cardiac diseases. This study aims to develop a transformation model on the existing FFD non-rigid registration algorithm using combining the shape-based and the intensity-based approaches. A novel two-step multi-resolution non-rigid FFD-based registration algorithm was proposed to measure the radial strain of the left ventricle during the cardiac cycle using cine-MRI images. The endocardial wall shape information was introduced to improve the registration accuracy by combining the original intensity-based registration with the shape-based registration approach. The proposed algorithm was evaluated on ten sequences of cine-MR images: First, the proposed algorithm was validated by two identified 3D-landmarks and then applied to a healthy subject and an LVH patient to calculate the left ventricle regional radial strain during a cardiac cycle. Regarding two anatomical landmarks, their estimated displacements from our proposed two-step registration algorithm showed a better match with the reference values compared to the classical registration method. Moreover, a comparison of normal and abnormal radial segmental strain values calculated by our proposed algorithm showed a clear difference in their functional properties. The promising results showed that the proposed registration algorithm outperformed the conventional one in terms of the accuracies of the point-tracking.
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