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首页> 外文期刊>Journal of Neuroscience Methods >Three-dimensional reconstruction of stained histological slices and 3D non-linear registration with in-vivo MRI for whole baboon brain.
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Three-dimensional reconstruction of stained histological slices and 3D non-linear registration with in-vivo MRI for whole baboon brain.

机译:整个狒狒脑的三维组织切片的三维重建和体内MRI的3D非线性配准。

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摘要

The correlation between post-mortem data and in-vivo brain images is of high interest for studying neurodegenerative diseases. This paper describes a protocol that matches a series of stained histological slices of a baboon brain with an anatomical MRI scan of the same subject using an intermediate 3D-consistent volume of "blockface" photographs taken during the sectioning process. Each stained histological section of the baboon brain was first registered to its corresponding blockface photograph using a novel "hemi-rigid" transformation. This piecewise rigid 2D transformation was specifically adapted to the registration of slices which contained both hemispheres. Subsenquently, to correct the global 3D deformations of the brain caused by histological preparation and fixation, a 3D elastic transformation was estimated between the blockface volume and the MRI data. This 3D elastic transformation was then applied to the histological volume previously aligned using the hemi-rigid method to complete the registration of the series of stained histological slices with the MRI data. We assessed the efficacy of our method by evaluating the quality of matching of anatomical features as well as the difference of volume measurements between the MRI and the histological images. Two complete baboon brains (with the exception of cerebellum) were successfully processed using our protocol.
机译:死后数据与体内脑图像之间的相关性对于研究神经退行性疾病非常感兴趣。本文介绍了一种协议,该协议使用在切片过程中拍摄的3D一致的中间“相”照片体积,将狒狒脑的一系列染色组织切片与同一对象的解剖MRI扫描相匹配。首先使用新颖的“半刚性”转换将狒狒大脑的每个染色的组织学部分记录到其相应的正面照片中。这种分段的刚性2D转换特别适合于包含两个半球的切片的配准。随后,为纠正由组织学准备和固定引起的整体3D大脑变形,估计了块体体积和MRI数据之间的3D弹性变形。然后将此3D弹性变换应用于先前使用半刚性方法对齐的组织学体积,以完成一系列染色的组织学切片与MRI数据的配准。我们通过评估解剖特征的匹配质量以及MRI和组织学图像之间的体积测量差异来评估我们方法的有效性。使用我们的协议成功处理了两个完整的狒狒大脑(小脑除外)。

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