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Updated: Mar 14, 2026

Long-term Live Imaging Device for Improved Experimental Manipulation of Zebrafish Larvae
Published on: October 27, 2017
Customizable FDM-based zebrafish larva mold for live imaging
Marcela Xiomara Rivera Pineda1,2,3, Jaakko Lehtimäki1,2,3, Guillaume Jacquemet1,2,3,4
1Faculty of Science and Engineering, Cell Biology, Åbo Akademi University, 20520 Turku, Finland.
Abstract:
Accurate and reproducible orientation of zebrafish larvae is essential for high-resolution live imaging but remains difficult with standard agarose mounting. Although previous methods have used 3D-printed tools, often fabricated via stereolithography, here, we present an orientation tool made via fused deposition modeling and enhanced with a thin resin coating to improve surface smoothness and performance. This design creates consistent, larval-shaped wells that orient larvae dorsoventrally. The molds, designed to fit standard glass-bottom imaging dishes, are inexpensive to produce on common desktop 3D printers and can be easily customized to fit different imaging setups using the open-source design files. This approach enables reliable, long-term live imaging of multiple larvae and extends the use of low-cost additive manufacturing in zebrafish imaging workflows.

