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扩展并改进的整个小鼠脑CCFv3注释和尼氏图谱。

An extended and improved CCFv3 annotation and Nissl atlas of the entire mouse brain.

作者信息

Piluso Sébastien, Verasztó Csaba, Carey Harry, Delattre Émilie, L'Yvonnet Thibaud, Colnot Éloïse, Romani Armando, Bjaalie Jan G, Markram Henry, Keller Daniel

机构信息

Blue Brain Project, École Polytechnique Fédérale de Lausanne (EPFL), Geneva, Switzerland.

Department of Molecular Medicine, Institute of Basic Medical Sciences, University of Oslo, Oslo, Norway.

出版信息

Imaging Neurosci (Camb). 2025 May 21;3. doi: 10.1162/imag_a_00565. eCollection 2025.

Abstract

Brain atlases are indispensable tools for quantifying cellular composition across mouse brain regions. The widely used Common Coordinate Framework version 3 (CCFv3) from the Allen Institute delineates over 600 anatomical regions but lacks coverage of the most rostral and caudal brain areas, including the main olfactory bulb, cerebellum, and medulla. Additionally, the CCFv3 does not include annotations for key cerebellar layers, and its Nissl-stained reference volume is misaligned, limiting its efficiency. To overcome these limitations, we developed the Blue Brain Project (BBP) CCFv3 augmented atlas (CCFv3), which includes a fully annotated mouse brain and an improved Nissl-stained reference volume aligned with the CCFv3. This enhanced atlas also features the central nervous system annotation. Building on this enhanced resource, we aligned 734 Nissl-stained brains to generate an average Nissl template at 10 µm resolution. This new atlas version enabled the construction of the first comprehensivemodel of cell distribution across the whole mouse central nervous system. This open-access resource broadens the applicability of brain atlases, supporting advancements in alignment accuracy, cell type mapping, and multimodal data integration.

摘要

脑图谱是量化小鼠脑区细胞组成的不可或缺的工具。艾伦脑科学研究所广泛使用的通用坐标框架第3版(CCFv3)划定了600多个解剖区域,但缺少对最前端和最后端脑区的覆盖,包括主嗅球、小脑和延髓。此外,CCFv3不包括关键小脑层的注释,其尼氏染色参考体积未对齐,限制了其效率。为了克服这些限制,我们开发了蓝脑计划(BBP)CCFv3增强图谱(CCFv3),其中包括一个完全注释的小鼠脑和一个与CCFv3对齐的改进的尼氏染色参考体积。这个增强图谱还具有中枢神经系统注释。基于这个增强资源,我们对齐了734个尼氏染色脑,以生成一个10微米分辨率的平均尼氏模板。这个新的图谱版本使得构建第一个全小鼠中枢神经系统细胞分布综合模型成为可能。这个开放获取资源拓宽了脑图谱的适用性,支持在对齐精度、细胞类型映射和多模态数据整合方面取得进展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b5e9/12319842/a56f6b727df2/imag_a_00565_fig1.jpg

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