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建立小鼠和狨猴脑结构之间的神经解剖学对应关系。

Establishing neuroanatomical correspondences across mouse and marmoset brain structures.

作者信息

Mezias Christopher, Huo Bingxing, Bota Mihail, Jayakumar Jaikishan, Mitra Partha P

机构信息

Cold Spring Harbor Laboratory, Department of Neuroscience, 1 Bungtown Rd, Cold Spring Harbor, NY.

Broad Institute of MIT and Harvard, Data Sciences Platform Division, 105 Broadway, Cambridge, MA.

出版信息

Res Sq. 2024 May 21:rs.3.rs-4373678. doi: 10.21203/rs.3.rs-4373678/v1.

Abstract

Interest in the common marmoset is growing due to evolutionarily proximity to humans compared to laboratory mice, necessitating a comparison of mouse and marmoset brain architectures, including connectivity and cell type distributions. Creating an actionable comparative platform is challenging since these brains have distinct spatial organizations and expert neuroanatomists disagree. We propose a general theoretical framework to relate named atlas compartments across taxa and use it to establish a detailed correspondence between marmoset and mice brains. Contrary to conventional wisdom that brain structures may be easier to relate at higher levels of the atlas hierarchy, we find that finer parcellations at the leaf levels offer greater reconcilability despite naming discrepancies. Utilizing existing atlases and associated literature, we created a list of leaf-level structures for both species and establish five types of correspondence between them. One-to-one relations were found between 43% of the structures in mouse and 47% in marmoset, whereas 25% of mouse and 10% of marmoset structures were not relatable. The remaining structures show a set of more complex mappings which we quantify. Implementing this correspondence with volumetric atlases of the two species, we make available a computational tool for querying and visualizing relationships between the corresponding brains. Our findings provide a foundation for computational comparative analyses of mesoscale connectivity and cell type distributions in the laboratory mouse and the common marmoset.

摘要

由于普通狨猴与人类在进化上的亲缘关系比实验小鼠更近,人们对它的兴趣与日俱增,因此有必要对小鼠和狨猴的脑结构进行比较,包括连接性和细胞类型分布。创建一个可行的比较平台具有挑战性,因为这些大脑具有不同的空间组织,而且神经解剖学专家们也存在分歧。我们提出了一个通用的理论框架,以关联不同分类群中已命名的图谱分区,并利用它在狨猴和小鼠的大脑之间建立详细的对应关系。与传统观念认为在图谱层次结构的较高层次上脑结构可能更容易关联不同,我们发现尽管存在命名差异,但叶级的更精细分区提供了更大的可协调性。利用现有的图谱和相关文献,我们为这两个物种创建了叶级结构列表,并在它们之间建立了五种对应关系。在小鼠的43%的结构和狨猴的47%的结构之间发现了一对一的关系,而小鼠的25%的结构和狨猴的10%的结构无法关联。其余的结构显示出一组我们已量化的更复杂的映射。通过将这种对应关系应用于这两个物种的体积图谱,我们提供了一个用于查询和可视化相应大脑之间关系的计算工具。我们的研究结果为实验室小鼠和普通狨猴的中尺度连接性和细胞类型分布的计算比较分析奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ef26/11142350/926dd79132a7/nihpp-rs4373678v1-f0001.jpg

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