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BMC Genomics|October 5, 2014
Transcriptional response to cardiac injury in the zebrafish: systematic identification of genes with highly concordant activity across in vivo modelsSophie Rodius, Petr V Nazarov, Isabel A Nepomuceno-Chamorro, et al.Current Biology : CB|August 20, 2013
Heartbeat-driven pericardiac fluid forces contribute to epicardium morphogenesisMarina Peralta, Emily Steed, Sébastien Harlepp, et al.Development (Cambridge, England)|January 7, 2016
The AP-1 transcription factor component Fosl2 potentiates the rate of myocardial differentiation from the zebrafish second heart fieldLeila Jahangiri, Michka Sharpe, Natasha Novikov, et al.Developmental Dynamics : an Official Publication of the American Association of Anatomists|October 26, 2020
Notch and Bmp signaling pathways act coordinately during the formation of the proepicardiumLaura Andrés-Delgado, María Galardi-Castilla, Juliane Münch, et al.Circulation|February 4, 2022
lncExACT1 and DCHS2 Regulate Physiological and Pathological Cardiac GrowthHaobo Li, Lena E Trager, Xiaojun Liu, et al.Cell Reports|September 1, 2015
Telomerase Is Essential for Zebrafish Heart RegenerationDorota Bednarek, Juan Manuel González-Rosa, Gabriela Guzmán-Martínez, et al.FASEB Journal : Official Publication of the Federation of American Societies for Experimental Biology|September 18, 2023
Zebrafish as a high throughput model for organ preservation and transplantation researchLuciana Da Silveira Cavalcante, Manuela Lopera Higuita, Juan Manuel González-Rosa, et al.Cell Reports|August 1, 2019
Wilms Tumor 1b Expression Defines a Pro-regenerative Macrophage Subtype and Is Required for Organ Regeneration in the ZebrafishAndrés Sanz-Morejón, Ana B García-Redondo, Hanna Reuter, et al.Pageof 3