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Development (Cambridge, England)|March 10, 2011
Restriction of hepatic competence by Fgf signalingDonghun Shin, Yoonsung Lee, Kenneth D Poss, et al.Development (Cambridge, England)|March 19, 2016
Multicolor mapping of the cardiomyocyte proliferation dynamics that construct the atriumMatthew J Foglia, Jingli Cao, Valerie A Tornini, et al.Development (Cambridge, England)|August 15, 2008
Fgfs control homeostatic regeneration in adult zebrafish finsAiron A Wills, Ambrose R Kidd, Alexandra Lepilina, et al.Trends in Genetics : TIG|August 10, 2013
The zebrafish as a model for complex tissue regenerationMatthew Gemberling, Travis J Bailey, David R Hyde, et al.Cell Reports|September 3, 2020
Tp53 Suppression Promotes Cardiomyocyte Proliferation during Zebrafish Heart RegenerationAdam Shoffner, Valentina Cigliola, Nutishia Lee, et al.Developmental Cell|February 16, 2010
Neuronal regulation of the spatial patterning of neurogenesisRosa Gonzalez-Quevedo, Yoonsung Lee, Kenneth D Poss, et al.Disease Models & Mechanisms|May 21, 2010
Ras controls melanocyte expansion during zebrafish fin stripe regenerationYoonsung Lee, Gregory Nachtrab, Pai W Klinsawat, et al.Biophysical Journal|May 22, 2021
Mathematical modeling of Erk activity waves in regenerating zebrafish scalesLuke D Hayden, Kenneth D Poss, Alessandro De Simone, et al.Development (Cambridge, England)|November 30, 2007
Regulated addition of new myocardial and epicardial cells fosters homeostatic cardiac growth and maintenance in adult zebrafishAiron A Wills, Jennifer E Holdway, Robert J Major, et al.Development (Cambridge, England)|October 28, 2005
Fgf signaling instructs position-dependent growth rate during zebrafish fin regenerationYoonsung Lee, Sara Grill, Angela Sanchez, et al.Pageof 15