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Updated: Mar 6, 2026

Visualizing the Developing Brain in Living Zebrafish using Brainbow and Time-lapse Confocal Imaging
Published on: March 23, 2020
Optical Projection Tomography as a Novel Method to Visualize and Quantitate Whole-Brain Patterns of Cell
Benjamin W Lindsey1, Jan Kaslin1
1Australian Regenerative Medicine Institute, Monash University , Clayton, Australia .
Abstract:
How distinct cell populations are distributed in three-dimensional space under homeostasis or following injury, neurodegeneration, or with senescence can teach us much about brain-wide patterns and signaling along the neuroaxis. Visualizing individual cell populations in the mature vertebrate central nervous system (CNS) has remained a challenge as a result of difficulty clearing adult brain tissue or limitations in imaging depth or resolution. We have developed a simple clearing and imaging pipeline optimally suited for the adult zebrafish brain to investigate changes in patterns of cell proliferation in wild-type and transgenic backgrounds that can easily be quantified and represented using FIJI and IMARIS software.

