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Multimodal non‐rigid registration methods based on local variability measures in computed tomography and magnetic resonance brain images

机译:基于局部可变性措施的多模式非刚性登记方法和磁共振大脑图像

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摘要

This paper presents a novel non-rigid multimodal registration method that relies on three basic steps: first, an initial approximation of the deformation field is obtained by a parametric registration technique based on particle filtering; second, an intensity mapping based on local variability measures (LVM) is applied over the two images in order to overcome the multimodal restriction between them; and third, an optical flow method is used in an iterative way to find the remaining displacements of the deformation field. Hence the new methodology offers a solution for multimodal NRR by a quadratic optimisation over a convex surface, which allows independent motion of each pixel, in contrast to methods that parameterise the deformation space. To evaluate the proposed method, a set of magnetic resonance/computed tomography clinical studies (pre- and post-radiotherapy treatment) of three patients with cerebral tumour deformations of the brain structures was employed. The resulting registration was evaluated both qualitatively and quantitatively by standard indices of correspondence over anatomical structures of interest in radiotherapy (brain, tumour and cerebral ventricles). These results showed that one of the proposed LVM (entropy) offers a superior performance in estimating the non-rigid deformation field.
机译:本文提出了一种新的非刚性多模式登记方法,其依赖于三个基本步骤:首先,通过基于颗粒滤波的参数登记技术获得变形场的初始近似;其次,基于本地可变性措施(LVM)的强度映射在两个图像上施加,以克服它们之间的多式化限制;第三,以迭代方式使用光学流量方法来找到变形场的剩余位移。因此,新方法通过凸面上的二次优化提供了用于多模式NRR的解决方案,其允许每个像素的独立运动,与参数化变形空间的方法相比。为了评估所提出的方法,采用了一组磁共振/计算断层摄影术语研究(放疗前和后疗法治疗)的脑结构的脑肿瘤变形患者。通过对放射治疗(脑,肿瘤和脑室)的兴趣解剖结构的标准对应指标进行定性和定量评估所得的登记。这些结果表明,其中一个提出的LVM(熵)提供了较高的性能,估计非刚性变形场。

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