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Spatial normalization of ultrahigh resolution 7 T magnetic resonance imaging data of the postmortem human subthalamic nucleus: a multistage approach

机译:死后人类丘脑底核超高分辨率7T磁共振成像数据的空间归一化:多阶段方法

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摘要

In this paper, we describe a novel processing strategy for the spatial normalization of ultrahigh resolution magnetic resonance imaging (MRI) data of small ex vivo samples into MNI standard space. We present a multistage scanning and registration method for data of the subthalamic nucleus (STN) obtained using ultrahigh 7 T MRI on four human postmortem brain samples. Four whole brains were obtained and subjected to multistage MRI scanning, corresponding to four different brain dissection stages. Data sets were acquired with an isotropic resolution of 100 μm enabling accurate manual segmentation of the STN. Spatial normalization to MNI reference space was performed, probability maps were calculated, and results were cross-checked with an independent in vivo dataset showing significant overlay. Normalization of results obtained from small tissue samples into MNI standard space will facilitate comparison between individual subjects, as well as between studies. When combining ultrahigh resolution MRI of ex vivo samples with histological studies via blockface imaging, our method enables further insight and inference as multimodal data can be compared within the same reference space. This novel technique may be of value for research purposes using functional MRI techniques, and in the future may be of assistance for anatomical orientation in clinical practice.
机译:在本文中,我们描述了一种新的处理策略,用于将小的离体样本的超高分辨率磁共振成像(MRI)数据空间标准化为MNI标准空间。我们为使用人类4个人体死后脑样本的超高7T MRI获得的丘脑下核(STN)数据提供了一种多阶段扫描和配准方法。获得了四个全脑并进行了多阶段MRI扫描,分别对应于四个不同的脑解剖阶段。以100μm的各向同性分辨率获取数据集,从而可以对STN进行精确的手动分割。进行了对MNI参考空间的空间归一化,计算了概率图,并使用显示有明显重叠的独立体内数据集对结果进行了交叉检查。从小组织样本到MNI标准空间的结果归一化将有助于各个受试者之间以及研究之间的比较。将离体样品的超高分辨率MRI与通过人脸成像的组织学研究相结合时,我们的方法能够提供更多的见识和推断,因为可以在同一参考空间内比较多峰数据。这项新技术可能对使用功能性MRI技术进行研究具有重要意义,并且将来可能有助于临床实践中的解剖学定位。

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