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Updated: Aug 27, 2026

Imaging and 3D Reconstruction of Cerebrovascular Structures in Embryonic Zebrafish
Published on: April 22, 2014
A 3D printable device for non-invasive longitudinal neuroimaging in the adult zebrafish
Elizabeth M Haynes1,2, Corey Steinhauser2,3, Alexandra Fister1
1Department of Cell and Regenerative Biology, University of Wisconsin-Madison, USA.
Abstract:
Zebrafish are a powerful model for imaging studies of development and neurobiology. However, most studies have focused on developing zebrafish due to technical and biological challenges of imaging adult stages. These include increased tissue opacity and illumination depth limitations, and difficulty maintaining life support and anesthesia in a 2-4cm long fish. There are currently limited tools for intravital imaging of the adult zebrafish brain. The ability to image the brain in the same individual repeatedly without physical damage would facilitate the use of zebrafish to study aging and neurodegenerative disease. We designed and applied a 3D-printable device for non-invasive, repeatable multiphoton neural imaging of genetically non-pigmented adult zebrafish across multiple ages and sizes. Animals successfully recovered after multi-hour imaging sessions and can be imaged repeatedly over periods of weeks to years. We show the utility of this approach through imaging the dynamic cells of the neuroimmune system, as well as radial glial cells and oligodendrocytes. This technique could be widely used and beneficial for other cell-scale neuroimaging studies in adult fish.

