猕猴
神经科学
体素
视皮层
投影(关系代数)
丘脑
生物
人工智能
计算机科学
算法
作者
Can Zhou,Xiaoquan Yang,Shihao Wu,Qiuyuan Zhong,Ting Luo,Anan Li,Guangcai Liu,Qingtao Sun,Pan Luo,Lei Deng,Hong Ni,Chaozhen Tan,Jing Yuan,Qingming Luo,Xintian Hu,Xiangning Li,Hui Gong
标识
DOI:10.1016/j.scib.2021.08.003
摘要
To decipher the organizational logic of complex brain circuits, it is important to chart long-distance pathways while preserving micron-level accuracy of local network. However, mapping the neuronal projections with individual-axon resolution in the large and complex primate brain is still challenging. Herein, we describe a highly efficient pipeline for three-dimensional mapping of the entire macaque brain with subcellular resolution. The pipeline includes a novel poly-N-acryloyl glycinamide (PNAGA)-based embedding method for long-term structure and fluorescence preservation, high-resolution and rapid whole-brain optical imaging, and image post-processing. The cytoarchitectonic information of the entire macaque brain was acquired with a voxel size of 0.32 μm × 0.32 μm × 10 μm, showing its anatomical structure with cell distribution, density, and shape. Furthermore, thanks to viral labeling, individual long-distance projection axons from the frontal cortex were for the first time reconstructed across the entire brain hemisphere with a voxel size of 0.65 μm × 0.65 μm × 3 μm. Our results show that individual cortical axons originating from the prefrontal cortex simultaneously target multiple brain regions, including the visual cortex, striatum, thalamus, and midbrain. This pipeline provides an efficient method for cellular and circuitry investigation of the whole macaque brain with individual-axon resolution, and can shed light on brain function and disorders.
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