毫秒
自适应光学
生物
断层重建
光毒性
活体细胞成像
比例(比率)
断层摄影术
波前
生物系统
光学
物理
细胞
量子力学
生物化学
遗传学
体外
天文
作者
Jiamin Wu,Zhi Lü,Dong Jiang,Yuduo Guo,Hui Qiao,Yi Zhang,Tianyi Zhu,Yeyi Cai,Xu Zhang,Karl Zhanghao,Hao Xie,Tao Yan,Guoxun Zhang,Xiaoxu Li,Zheng Jiang,Xing Lin,Lu Fang,Bing Zhou,Peng Xi,Jingtao Fan,Li Yu,Qionghai Dai
出处
期刊:Cell
[Elsevier]
日期:2021-05-25
卷期号:184 (12): 3318-3332.e17
被引量:150
标识
DOI:10.1016/j.cell.2021.04.029
摘要
Long-term subcellular intravital imaging in mammals is vital to study diverse intercellular behaviors and organelle functions during native physiological processes. However, optical heterogeneity, tissue opacity, and phototoxicity pose great challenges. Here, we propose a computational imaging framework, termed digital adaptive optics scanning light-field mutual iterative tomography (DAOSLIMIT), featuring high-speed, high-resolution 3D imaging, tiled wavefront correction, and low phototoxicity with a compact system. By tomographic imaging of the entire volume simultaneously, we obtained volumetric imaging across 225 × 225 × 16 μm3, with a resolution of up to 220 nm laterally and 400 nm axially, at the millisecond scale, over hundreds of thousands of time points. To establish the capabilities, we investigated large-scale cell migration and neural activities in different species and observed various subcellular dynamics in mammals during neutrophil migration and tumor cell circulation.
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