计算机科学
视野
随机存取
显微镜
图像分辨率
光学
计算机视觉
生物医学工程
材料科学
物理
工程类
操作系统
作者
Ruheng Shi,Xinyue Chen,Junhao Deng,Junhao Liang,Kuikui Fan,Feifan Zhou,Peifu Tang,Licheng Zhang,Lingjie Kong
出处
期刊:Nature Photonics
[Nature Portfolio]
日期:2024-04-17
卷期号:18 (7): 721-730
被引量:5
标识
DOI:10.1038/s41566-024-01422-1
摘要
Abstract Benefitting from the advantages of high imaging throughput and low cost, wide-field microscopy has become indispensable in biomedical studies. However, it remains challenging to record biodynamics with a large field of view and high spatiotemporal resolution due to the limited space–bandwidth product. Here we propose random-access wide-field (RA-WiFi) mesoscopy for the imaging of in vivo biodynamics over a 163.84 mm 2 area with a spatial resolution of ~2.18 μm. We extend the field of view beyond the nominal value of the objective by enlarging the object distance, which leads to a lower field angle, followed by the correction of optical aberrations. We also implement random-access scanning with structured illumination, which enables optical-sectioning capability and high imaging contrast. The multi-plane imaging capability also makes the technique suitable for curved-surface samples. We demonstrate RA-WiFi mesoscopy in multi-modal imaging, including bright-field, dark-field and multi-colour fluorescence imaging. Specifically, we apply RA-WiFi mesoscopy to calcium imaging of cortex-wide neural network activities in awake mice in vivo, under both physiological and pathological conditions. We also show its unique capability in the three-dimensional random access of irregular regions of interest via the biodynamic imaging of mouse spinal cords in vivo. As a compact, low-cost mesoscope with optical-sectioning capability, RA-WiFi mesoscopy will enable broad applications in the biodynamic study of biological systems.
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