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Published on: March 1, 2024
Multiplane 2.5D microscopy for high-throughput high-resolution tissue imaging
Le-Mei Wang1, Dhruvam Pandey1, Wencai Zhang2
1University of Central Florida, CREOL, The College of Optics and Photonics, Orlando, Florida, United States.
Significance:
Fast, high-throughput fluorescence imaging is essential for numerous biomedical applications, particularly in high-resolution volumetric tissue analysis.
Aim:
We aim to develop an imaging strategy that combines the strengths of multiplane microscopy and extended depth-of-field (EDOF) microscopy and to characterize its performance on tissue samples.
Approach:
We employed 2.5D microscopy, an EDOF approach optimized for high-resolution imaging, and integrated it with a quad-plane image splitter. This technique enables simultaneous capture of four focal volumes using a single camera, allowing volumetric imaging of to thick mouse and human tissues prepared as frozen or formalin-fixed, paraffin-embedded sections.
Results:
Our approach achieves a 25-fold reduction in image acquisition time compared with conventional -scanning widefield microscopy. For example, a volume can be imaged in 4.7 min, down from . We further demonstrate compatibility with multicolor imaging and successful application to nucleus segmentation for downstream analysis.
Conclusions:
This imaging technique provides a promising tool for tissue analysis, offering significant improvements in volumetric imaging speed with minimal compromise in spatial resolution and sensitivity.
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