连接组学
计算机科学
连接体
追踪
灵长类动物
显微镜
神经科学
体素
人工智能
生物
光学
物理
操作系统
功能连接
作者
Fang Xu,Yongming Shen,Lufeng Ding,Chao‐Yu Yang,Heng Tan,Hao Wang,Qingyuan Zhu,Rui Xu,Fengyi Wu,Yanyang Xiao,Cheng Xu,Qianwei Li,Peng Su,Li I. Zhang,Hong‐Wei Dong,Robert Desimone,Fuqiang Xu,Xintian Hu,Pak-Ming Lau,Guo‐Qiang Bi
标识
DOI:10.1038/s41587-021-00986-5
摘要
Whole-brain mesoscale mapping in primates has been hindered by large brain sizes and the relatively low throughput of available microscopy methods. Here, we present an approach that combines primate-optimized tissue sectioning and clearing with ultrahigh-speed fluorescence microscopy implementing improved volumetric imaging with synchronized on-the-fly-scan and readout technique, and is capable of completing whole-brain imaging of a rhesus monkey at 1 × 1 × 2.5 µm3 voxel resolution within 100 h. We also developed a highly efficient method for long-range tracing of sparse axonal fibers in datasets numbering hundreds of terabytes. This pipeline, which we call serial sectioning and clearing, three-dimensional microscopy with semiautomated reconstruction and tracing (SMART), enables effective connectome-scale mapping of large primate brains. With SMART, we were able to construct a cortical projection map of the mediodorsal nucleus of the thalamus and identify distinct turning and routing patterns of individual axons in the cortical folds while approaching their arborization destinations.
科研通智能强力驱动
Strongly Powered by AbleSci AI