首页> 美国卫生研究院文献>Frontiers in Systems Neuroscience >Computer Vision Evidence Supporting Craniometric Alignment of Rat Brain Atlases to Streamline Expert-Guided First-Order Migration of Hypothalamic Spatial Datasets Related to Behavioral Control
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Computer Vision Evidence Supporting Craniometric Alignment of Rat Brain Atlases to Streamline Expert-Guided First-Order Migration of Hypothalamic Spatial Datasets Related to Behavioral Control

机译:计算机视觉证据支持大鼠脑图谱的颅骨比对以简化与行为控制有关的下丘脑空间数据集的专家指导的一阶迁移。

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摘要

The rat has arguably the most widely studied brain among all animals, with numerous reference atlases for rat brain having been published since 1946. For example, many neuroscientists have used the atlases of Paxinos and Watson (PW, first published in 1982) or Swanson (S, first published in 1992) as guides to probe or map specific rat brain structures and their connections. Despite nearly three decades of contemporaneous publication, no independent attempt has been made to establish a basic framework that allows data mapped in PW to be placed in register with S, or vice versa. Such data migration would allow scientists to accurately contextualize neuroanatomical data mapped exclusively in only one atlas with data mapped in the other. Here, we provide a tool that allows levels from any of the seven published editions of atlases comprising three distinct PW reference spaces to be aligned to atlas levels from any of the four published editions representing S reference space. This alignment is based on registration of the anteroposterior stereotaxic coordinate (z) measured from the skull landmark, Bregma (β). Atlas level alignments performed along the z axis using one-dimensional Cleveland dot plots were in general agreement with alignments obtained independently using a custom-made computer vision application that utilized the scale-invariant feature transform (SIFT) and Random Sample Consensus (RANSAC) operation to compare regions of interest in photomicrographs of Nissl-stained tissue sections from the PW and S reference spaces. We show that z-aligned point source data (unpublished hypothalamic microinjection sites) can be migrated from PW to S space to a first-order approximation in the mediolateral and dorsoventral dimensions using anisotropic scaling of the vector-formatted atlas templates, together with expert-guided relocation of obvious outliers in the migrated datasets. The migrated data can be contextualized with other datasets mapped in S space, including neuronal cell bodies, axons, and chemoarchitecture; to generate data-constrained hypotheses difficult to formulate otherwise. The alignment strategies provided in this study constitute a basic starting point for first-order, user-guided data migration between PW and S reference spaces along three dimensions that is potentially extensible to other spatial reference systems for the rat brain.
机译:可以说,老鼠是所有动物中研究最广泛的大脑,自1946年以来,已经出版了许多关于老鼠脑的参考地图集。例如,许多神经科学家使用了Paxinos和Watson(PW,于1982年首次出版)地图集或Swanson( S,首次发表于1992年)作为指导,以探测或绘制特定的大鼠脑结构及其连接。尽管同时发布了将近三十年,但仍未进行独立尝试来建立一个基本框架,该框架允许将PW中映射的数据与S一起注册,反之亦然。这种数据迁移将使科学家能够准确地将仅在一个地图集中映射的神经解剖学数据与在另一个地图集中映射的数据准确地关联起来。在此,我们提供了一种工具,可以将包含三个不同的PW参考空间的地图集的七个发行版本中的任何一个的水平与代表S参考空间的四个发行版本中的任何地图集的水平对齐。该对齐基于从头骨界标Bregma(β)测得的前后立体定向坐标(z)的对齐。使用一维Cleveland点图沿z轴执行的Atlas水平对齐与使用定制计算机视觉应用程序独立获得的对齐一致,该应用程序使用尺度不变特征变换(SIFT)和随机样本共识(RANSAC)操作比较从PW和S参考空间获得的Nissl染色组织切片的显微照片中感兴趣的区域。我们显示,z向对齐的点源数据(未发表的下丘脑显微注射部位)可以使用矢量格式的图集模板的各向异性缩放,从PW迁移到S空间,以在中外侧和背腹尺寸上进行一阶逼近,指导重新定位已迁移数据集中的明显异常值。可以将已迁移的数据与在S空间中映射的其他数据集(包括神经元细胞体,轴突和化学结构)进行关联。生成数据约束的假设,而这些假设很难用其他方式阐述。这项研究中提供的对齐策略构成了在PW和S参考空间之间沿三个维度进行用户指导的一阶数据迁移的基本起点,该维度可能扩展到大鼠大脑的其他空间参考系统。

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