All-optical interrogation of brain-wide activity in freely swimming larval zebrafish

Summary: We introduce an all-optical technique that enables volumetric imaging of brain-wide calcium activity and targeted optogenetic stimulation of specific brain regions in unrestrained larval zebrafish. The system consists of three main components: a 3D tracking module, a dual-color fluorescence...

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Bibliographic Details
Main Authors: Yuming Chai, Kexin Qi, Yubin Wu, Daguang Li, Guodong Tan, Yuqi Guo, Jun Chu, Yu Mu, Chen Shen, Quan Wen
Format: Article
Language:English
Published: Elsevier 2024-01-01
Series:iScience
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Online Access:http://www.sciencedirect.com/science/article/pii/S2589004223024628
Description
Summary:Summary: We introduce an all-optical technique that enables volumetric imaging of brain-wide calcium activity and targeted optogenetic stimulation of specific brain regions in unrestrained larval zebrafish. The system consists of three main components: a 3D tracking module, a dual-color fluorescence imaging module, and a real-time activity manipulation module. Our approach uses a sensitive genetically encoded calcium indicator in combination with a long Stokes shift red fluorescence protein as a reference channel, allowing the extraction of Ca2+ activity from signals contaminated by motion artifacts. The method also incorporates rapid 3D image reconstruction and registration, facilitating real-time selective optogenetic stimulation of different regions of the brain. By demonstrating that selective light activation of the midbrain regions in larval zebrafish could reliably trigger biased turning behavior and changes of brain-wide neural activity, we present a valuable tool for investigating the causal relationship between distributed neural circuit dynamics and naturalistic behavior.
ISSN:2589-0042