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  3. Use of echocardiography reveals reestablishment of ventricular pumping efficiency and partial ventricular wall motion recovery upon ventricular cryoinjury in the zebrafish
 

Use of echocardiography reveals reestablishment of ventricular pumping efficiency and partial ventricular wall motion recovery upon ventricular cryoinjury in the zebrafish

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BORIS DOI
10.7892/boris.79613
Date of Publication
2014
Publication Type
Article
Division/Institute

Institut für Anatomie...

Author
González-Rosa, Juan Manuel
Guzmán-Martínez, Gabriela
dos Santos Marques, Ines Joao
Institut für Anatomie
Sánchez-Iranzo, Héctor
Jiménez-Borreguero, Luis Jesús
Mercader Huber, Nadia Isabelorcid-logo
Institut für Anatomie
Subject(s)

600 - Technology::610...

Series
PLoS ONE
ISSN or ISBN (if monograph)
1932-6203
Publisher
Public Library of Science
Language
English
Publisher DOI
10.1371/journal.pone.0115604
PubMed ID
25532015
Description
AIMS

While zebrafish embryos are amenable to in vivo imaging, allowing the study of morphogenetic processes during development, intravital imaging of adults is hampered by their small size and loss of transparency. The use of adult zebrafish as a vertebrate model of cardiac disease and regeneration is increasing at high speed. It is therefore of great importance to establish appropriate and robust methods to measure cardiac function parameters.

METHODS AND RESULTS

Here we describe the use of 2D-echocardiography to study the fractional volume shortening and segmental wall motion of the ventricle. Our data show that 2D-echocardiography can be used to evaluate cardiac injury and also to study recovery of cardiac function. Interestingly, our results show that while global systolic function recovered following cardiac cryoinjury, ventricular wall motion was only partially restored.

CONCLUSION

Cryoinjury leads to long-lasting impairment of cardiac contraction, partially mimicking the consequences of myocardial infarction in humans. Functional assessment of heart regeneration by echocardiography allows a deeper understanding of the mechanisms of cardiac regeneration and has the advantage of being easily transferable to other cardiovascular zebrafish disease models.
Handle
https://boris-portal.unibe.ch/handle/20.500.12422/140300
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