bioRxiv · 10.1101/2021.12.02.470995
Miniature Structured Illumination Microscope for in vivo 3D Imaging of Brain Structures with Optical Sectioning
Abstract
We present a high-resolution miniature, light-weight fluorescence microscope with electrowetting lens and onboard CMOS for high resolution volumetric imaging and structured illumination for rejection of out-of-focus and scattered light. The miniature microscope (SIMscope3D) delivers structured light using a coherent fiber bundle to obtain optical sectioning with an axial resolution of 18 m. Volumetric imaging of eGFP labeled cells in fixed mouse brain tissue at depths up to 220 m is demonstrated. The functionality of SIMscope3D to provide background free 3D imaging is shown by recording time series of microglia dynamics in awake mice at depths up to 120 m in the brain.
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Supekar, O. D., Sias, A., Hansen, S. R., Martinez, G., Peet, G. C., Peng, X., Bright, V. M., Hughes, E. G., Restrepo, D., Shepherd, D. P., Welle, C. G., Gopinath, J. T., Gibson, E. A.. 2021-12-03. Miniature Structured Illumination Microscope for in vivo 3D Imaging of Brain Structures with Optical Sectioning. https://doi.org/10.1101/2021.12.02.470995
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