Real-time volumetric reconstruction of biological dynamics with light-field microscopy and deep learning.

Wang, Zhaoqiang; Zhu, Lanxin; Zhang, Hao; Li, Guo; Yi, Chengqiang; Li, Yi; Yang, Yicong; Ding, Yichen et al. · Nat Methods · 2021

basic_science · Level V

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Abstract

Light-field microscopy has emerged as a technique of choice for high-speed volumetric imaging of fast biological processes. However, artifacts, nonuniform resolution and a slow reconstruction speed have limited its full capabilities for in toto extraction of dynamic spatiotemporal patterns in samples. Here, we combined a view-channel-depth (VCD) neural network with light-field microscopy to mitigate these limitations, yielding artifact-free three-dimensional image sequences with uniform spatial resolution and high-video-rate reconstruction throughput. We imaged neuronal activities across moving Caenorhabditis elegans and blood flow in a beating zebrafish heart at single-cell resolution with volumetric imaging rates up to 200 Hz.

Medical subject headings