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Robust thalamic nuclei segmentation method based on local diffusion magnetic resonance properties

机译:基于局部扩散磁共振特性的鲁棒丘脑核分割方法

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摘要

The thalamus is an essential relay station in the cortical–subcortical connections. It is characterized by a complex anatomical architecture composed of numerous small nuclei, which mediate the involvement of the thalamus in a wide range of neurological functions. We present a novel framework for segmenting the thalamic nuclei, which explores the orientation distribution functions (ODFs) from diffusion magnetic resonance images at 3 T. The differentiation of the complex intra-thalamic microstructure is improved by using the spherical harmonic (SH) representation of the ODFs, which provides full angular characterization of the diffusion process in each voxel. The clustering was performed using the k-means algorithm initialized in a data-driven manner. The method was tested on 35 healthy volunteers and our results show a robust, reproducible and accurate segmentation of the thalamus in seven nuclei groups. Six of them closely matched the anatomy and were labeled as anterior, ventral anterior, medio-dorsal, ventral latero-ventral, ventral latero-dorsal and pulvinar, while the seventh cluster included the centro-lateral and the latero-posterior nuclei. Results were evaluated both qualitatively, by comparing the segmented nuclei to the histological atlas of Morel, and quantitatively, by measuring the clusters’ extent and the clusters’ spatial distribution across subjects and hemispheres. We also showed the robustness of our approach across different sequences and scanners, as well as intra-subject reproducibility of the segmented clusters using additional two scan–rescan datasets. We also observed an overlap between the path of the main long-connection tracts passing through the thalamus and the spatial distribution of the nuclei identified with our clustering algorithm. Our approach, based on SH representations of the ODFs, outperforms the one based on angular differences between the principle diffusion directions, which is considered so far as state-of-the-art method. Our findings show an anatomically reliable segmentation of the main groups of thalamic nuclei that could be of potential use in many clinical applications.Electronic supplementary materialThe online version of this article (doi:10.1007/s00429-016-1336-4) contains supplementary material, which is available to authorized users.
机译:丘脑是皮层-皮层下连接中必不可少的中继站。它的特征是由许多小核组成的复杂解剖结构,它介导丘脑参与多种神经功能。我们提出了一种用于分割丘脑核的新框架,该框架从3 T处的扩散磁共振图像中探索了取向分布函数(ODF)。通过使用球谐(SH)表示法改善了丘脑内部复杂微结构的区分ODF,它提供了每个体素中扩散过程的完整角度特征。使用以数据驱动方式初始化的k-means算法执行聚类。该方法在35名健康志愿者身上进行了测试,我们的结果显示出七个核群中丘脑的鲁棒,可重现和准确分割。其中六个与解剖结构紧密匹配,分别标记为前,腹前,中背,腹侧腹-腹,腹侧腹-背和肺泡,而第七簇包括中央外侧核和外侧后核。通过将分割的核与羊肚菌的组织学图谱进行比较,对结果进行定性评估,并通过测量聚类的范围以及聚类在受试者和半球之间的空间分布来定量评估结果。我们还展示了我们的方法在不同序列和扫描仪之间的鲁棒性,以及使用另外两个扫描-再扫描数据集的分段聚类的受试者内部可再现性。我们还观察到穿过长丘脑的主要长连接区域的路径与用我们的聚类算法确定的核的空间分布之间存在重叠。我们的方法基于ODF的SH表示,其性能优于基于主要扩散方向之间的角度差的方法,这被认为是最新技术。我们的发现表明,丘脑核主要组的解剖学上可靠的分割可能在许多临床应用中具有潜在用途。电子补充材料本文的在线版本(doi:10.1007 / s00429-016-1336-4)包含补充材料,可供授权用户使用。

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