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Updated: Aug 21, 2026

Displacement Analysis of Myocardial Mechanical Deformation (DIAMOND) Reveals Segmental Heterogeneity of Cardiac Function in Embryonic Zebrafish
Published on: February 6, 2020
Understanding cardiovascular physiology in zebrafish and Xenopus larvae: the use of microtechniques
Thorsten Schwerte1, Regina Fritsche
1University of Innsbruck, Institute for Zoology and Limnology, Techniker Str. 25, A-6020 Innsbruck, Austria. thorsten.schwerte@uibk.ac.at
Abstract:
Zebrafish and Xenopus, genetically accessible vertebrates with an externally developing, optically clear embryo, are ideally suited for in vivo functional dissection of the embryonic development of the circulatory system. Physiological characterizations of the cardiovascular system are still imperative for a more complete understanding of the connections between genetic/epigenetic factors and cardiovascular development. Here, we review experimental tools and methods that have been developed to measure numerous cardiovascular parameters in these millimetre-sized animals.

