Bruce B. Riley

Affiliations: 
Texas A & M University, College Station, TX, United States 
Area:
Evolution and Development Biology, Neuroscience Biology
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"Bruce Riley"

Children

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Bryan T. Phillips grad student 2004 Texas A & M
Su J. Kwak grad student 2006 Texas A & M
Bonny B. Millimaki grad student 2010 Texas A & M
Elly M. Sweet grad student 2010 Texas A & M
Mahesh Padanad grad student 2011 Texas A & M
Shruti Vemaraju grad student 2011 Texas A & M
Neha Bhat grad student 2013 Texas A & M
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Publications

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Tan AL, Christensen SE, Baker AK, et al. (2023) Fgf, Hh, and pax2a differentially regulate expression of pax5 and pou3f3b in vestibular and auditory maculae in the zebrafish otic vesicle. Developmental Dynamics : An Official Publication of the American Association of Anatomists
Tan AL, Mohanty S, Guo J, et al. (2022) Pax2a, Sp5a and Sp5l act downstream of Fgf and Wnt to coordinate sensory-neural patterning in the inner ear. Developmental Biology
Riley BB. (2021) Comparative assessment of Fgf's diverse roles in inner ear development: A zebrafish perspective. Developmental Dynamics : An Official Publication of the American Association of Anatomists
Kantarci H, Gou Y, Riley BB. (2020) The Warburg Effect and lactate signaling augment Fgf-MAPK to promote sensory-neural development in the otic vesicle. Elife. 9
Vonica A, Bhat N, Phan K, et al. (2020) Apcdd1 is a dual BMP/Wnt inhibitor in the developing nervous system and skin. Developmental Biology
Kantarci H, Gou Y, Riley BB. (2020) Author response: The Warburg Effect and lactate signaling augment Fgf-MAPK to promote sensory-neural development in the otic vesicle Elife
Gou Y, Vemaraju S, Sweet EM, et al. (2018) sox2 and sox3 play unique roles in development of hair cells and neurons in the zebrafish inner ear. Developmental Biology
Gou Y, Guo J, Maulding K, et al. (2018) sox2 and sox3 cooperate to regulate otic/epibranchial placode induction in zebrafish. Developmental Biology
Kantarci H, Gerberding A, Riley BB. (2016) Spemann organizer gene Goosecoid promotes delamination of neuroblasts from the otic vesicle. Proceedings of the National Academy of Sciences of the United States of America
Wisniowiecki AM, Mattison SP, Kim S, et al. (2016) Use of a highly transparent zebrafish mutant for investigations in the development of the vertebrate auditory system (Conference Presentation) Proceedings of Spie. 9716
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