Integrated one- and two-photon scanned oblique plane illumination (SOPi) microscopy for rapid volumetric imaging
0301 basic medicine
0303 health sciences
03 medical and health sciences
Biological Physics (physics.bio-ph)
Quantitative Biology - Neurons and Cognition
FOS: Biological sciences
FOS: Physical sciences
Neurons and Cognition (q-bio.NC)
Physics - Biological Physics
DOI:
10.1364/oe.26.013027
Publication Date:
2018-05-11T16:39:17Z
AUTHORS (5)
ABSTRACT
15 pages, 7 figures<br/>Versatile, sterically accessible imaging systems capable of in vivo rapid volumetric functional and structural imaging deep in the brain continue to be a limiting factor in neuroscience research. Towards overcoming this obstacle, we present integrated one- and two-photon scanned oblique plane illumination (SOPi) microscopy which uses a single front-facing microscope objective to provide light-sheet scanning based rapid volumetric imaging capability at subcellular resolution. Our planar scan-mirror based optimized light-sheet architecture allows for non-distorted scanning of volume samples, simplifying accurate reconstruction of the imaged volume. Integration of both one-photon (1P) and two-photon (2P) light-sheet microscopy in the same system allows for easy selection between rapid volumetric imaging and higher resolution imaging in scattering media. Using SOPi, we demonstrate deep, large volume imaging capability inside scattering mouse brain sections and rapid imaging speeds up to 10 volumes per second in zebrafish larvae expressing genetically encoded fluorescent proteins GFP or GCaMP6s. SOPi flexibility and steric access makes it adaptable for numerous imaging applications and broadly compatible with orthogonal techniques for actuating or interrogating neuronal structure and activity.<br/>
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