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通过全脑形态计量学研究多个尺度的神经元多样性和刻板性。

Neuronal diversity and stereotypy at multiple scales through whole brain morphometry.

机构信息

New Cornerstone Science Laboratory, SEU-ALLEN Joint Center, Institute for Brain and Intelligence, Southeast University, Nanjing, Jiangsu, China.

School of Computer Science and Engineering, Southeast University, Nanjing, Jiangsu, China.

出版信息

Nat Commun. 2024 Nov 26;15(1):10269. doi: 10.1038/s41467-024-54745-6.

Abstract

We conducted a large-scale whole-brain morphometry study by analyzing 3.7 peta-voxels of mouse brain images at the single-cell resolution, producing one of the largest multi-morphometry databases of mammalian brains to date. We registered 204 mouse brains of three major imaging modalities to the Allen Common Coordinate Framework (CCF) atlas, annotated 182,497 neuronal cell bodies, modeled 15,441 dendritic microenvironments, characterized the full morphology of 1876 neurons along with their axonal motifs, and detected 2.63 million axonal varicosities that indicate potential synaptic sites. Our analyzed six levels of information related to neuronal populations, dendritic microenvironments, single-cell full morphology, dendritic and axonal arborization, axonal varicosities, and sub-neuronal structural motifs, along with a quantification of the diversity and stereotypy of patterns at each level. This integrative study provides key anatomical descriptions of neurons and their types across a multiple scales and features, contributing a substantial resource for understanding neuronal diversity in mammalian brains.

摘要

我们通过分析单细胞分辨率的 3.7 千万体素的小鼠脑图像进行了大规模的全脑形态计量学研究,生成了迄今为止最大的哺乳动物大脑多形态计量学数据库之一。我们将 204 只来自三种主要成像方式的小鼠大脑注册到 Allen 共同坐标框架 (CCF) 图谱中,注释了 182497 个神经元胞体,模拟了 15441 个树突微环境,描述了 1876 个神经元的完整形态及其轴突模式,并检测到 263 万个轴突突棘,表明潜在的突触部位。我们分析了与神经元群体、树突微环境、单细胞全形态、树突和轴突分支、轴突突棘以及亚神经元结构模式相关的六个层次的信息,并对每个层次的模式多样性和刻板性进行了量化。这项综合研究提供了跨多个尺度和特征的神经元及其类型的关键解剖描述,为理解哺乳动物大脑中的神经元多样性提供了重要资源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/26dc/11599929/cef020c1c091/41467_2024_54745_Fig1_HTML.jpg

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