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F-TIMER: Fast Tensor Image Morphing for Elastic Registration

机译:F-TIMER:用于弹性套准的快速张量图像变形

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摘要

We propose a novel diffusion tensor imaging (DTI) registration algorithm, called fast tensor image morphing for elastic registration (F-TIMER). F-TIMER leverages multiscale tensor regional distributions and local boundaries for hierarchically driving deformable matching of tensor image volumes. Registration is achieved by utilizing a set of automatically determined structural landmarks, via solving a soft correspondence problem. Based on the estimated correspondences, thin-plate splines are employed to generate a smooth, topology preserving, and dense transformation, and to avoid arbitrary mapping of nonlandmark voxels. To mitigate the problem of local minima, which is common in the estimation of high dimensional transformations, we employ a hierarchical strategy where a small subset of voxels with more distinctive attribute vectors are first deployed as landmarks to estimate a relatively robust low-degrees-of-freedom transformation. As the registration progresses, an increasing number of voxels are permitted to participate in refining the correspondence matching. A scheme as such allows less conservative progression of the correspondence matching towards the optimal solution, and hence results in a faster matching speed. Compared with its predecessor TIMER, which has been shown to outperform state-of-the-art algorithms, experimental results indicate that F-TIMER is capable of achieving comparable accuracy at only a fraction of the computation cost.
机译:我们提出了一种新颖的扩散张量成像(DTI)配准算法,称为用于弹性配准的快速张量图像变形(F-TIMER)。 F-TIMER利用多尺度张量区域分布和局部边界来分层驱动张量图像体积的可变形匹配。通过利用一组自动确定的结构界标,通过解决软对应问题来实现配准。根据估计的对应关系,使用薄板样条生成平滑的拓扑保留和密集的转换,并避免非地标体素的任意映射。为了缓解局部极小值(在高维变换的估计中很常见)的问题,我们采用了分层策略,首先将具有更独特属性矢量的一小部分体素作为地标,以估计相对鲁棒的低度自由的转变。随着注册的进行,越来越多的体素被允许参与完善对应匹配。这样的方案允许对应匹配朝最优解的保守程度降低,因此导致更快的匹配速度。与之前的TIMER(已证明其性能优于最新算法)相比,实验结果表明F-TIMER能够以相当低的计算成本实现相当的精度。

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