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Probabilistic Atlas of the Human Hippocampus Combining Ex Vivo MRI and Histology

机译:结合体内MRI和组织学的人类海马概率图谱

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The human hippocampus is a complex structure consisting of multiple anatomically and functionally distinct subfields. Obtaining subfield-specific measures from in vivo MRI is challenging, and can benefit from a detailed 3D anatomical reference. This paper builds a computational atlas of the hippocampus from high-resolution ex vivo MRI of 26 specimens using groupwise deformable registration. A surface-based approach based on the explicit segmentation and geometric modeling of hippocampal layers is used to initialize deformable registration of ex vivo MRI scans. This initialization improves of groupwise registration quality, as measured in terms of similarity metrics and qualitatively. The resulting atlas, which also includes annotations mapped from histology, is a unique resource for describing variability in hippocampal anatomy.
机译:人海马体是一个复杂的结构,由多个解剖学和功能上不同的子域组成。从体内MRI获得特定于子领域的措施具有挑战性,并且可以从详细的3D解剖参考中受益。本文使用成组的可变形配准方法,通过对26个标本进行高分辨率的离体MRI成像,建立了海马计算图集。基于海马层显式分割和几何建模的基于表面的方法用于初始化离体MRI扫描的可变形配准。根据相似性度量和定性度量,此初始化可提高按组注册的质量。生成的地图集(还包括从组织学映射的注释)是描述海马解剖结构变异性的独特资源。

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