Department of Biological Sciences
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Revisiting cell fate specification in the inner ear.
Current opinion in neurobiology Feb, 2002 | Pubmed ID: 11861162
Atlas of the developing inner ear in zebrafish.
Developmental dynamics : an official publication of the American Association of Anatomists Apr, 2002 | Pubmed ID: 11921341
Retroviral vectors to study cell differentiation.
Frontiers in bioscience : a journal and virtual library Jan, 2003 | Pubmed ID: 12456350
Three-dimensional morphology of inner ear development in Xenopus laevis.
Developmental dynamics : an official publication of the American Association of Anatomists Jul, 2003 | Pubmed ID: 12815629
Forced activation of Wnt signaling alters morphogenesis and sensory organ identity in the chicken inner ear.
Developmental biology Sep, 2003 | Pubmed ID: 12941626
Developmental biology. Rocks that roll zebrafish.
Science (New York, N.Y.) Oct, 2003 | Pubmed ID: 14551427
The development of semicircular canals in the inner ear: role of FGFs in sensory cristae.
Development (Cambridge, England) Sep, 2004 | Pubmed ID: 15280215
Clonal analysis of the relationships between mechanosensory cells and the neurons that innervate them in the chicken ear.
Development (Cambridge, England) Apr, 2005 | Pubmed ID: 15743876
Separate Na,K-ATPase genes are required for otolith formation and semicircular canal development in zebrafish.
Developmental biology Jun, 2006 | Pubmed ID: 16566913
Axon guidance in the inner ear.
The International journal of developmental biology , 2007 | Pubmed ID: 17891716
Slits and Robos in the developing chicken inner ear.
Developmental dynamics : an official publication of the American Association of Anatomists Feb, 2008 | Pubmed ID: 18213576
Comprehensive Wnt-related gene expression during cochlear duct development in chicken.
The Journal of comparative neurology Oct, 2008 | Pubmed ID: 18671253
Lineage analysis of inner ear cells using genomic tags for clonal identification.
Methods in molecular biology (Clifton, N.J.) , 2009 | Pubmed ID: 18839341
MicroRNAs are essential for development and function of inner ear hair cells in vertebrates.
Proceedings of the National Academy of Sciences of the United States of America May, 2009 | Pubmed ID: 19416898
Mapping of Wnt, frizzled, and Wnt inhibitor gene expression domains in the avian otic primordium.
The Journal of comparative neurology Dec, 2009 | Pubmed ID: 19842206
Vertebrate Lrig3-ErbB interactions occur in vitro but are unlikely to play a role in Lrig3-dependent inner ear morphogenesis.
PloS one , 2010 | Pubmed ID: 20126551
MicroRNA-183 family members regulate sensorineural fates in the inner ear.
The Journal of neuroscience : the official journal of the Society for Neuroscience Mar, 2010 | Pubmed ID: 20203184
MicroRNAs in hair cell development and deafness.
Current opinion in otolaryngology & head and neck surgery Oct, 2010 | Pubmed ID: 20717030
CtBP2 downregulation during neural crest specification induces expression of Mitf and REST, resulting in melanocyte differentiation and sympathoadrenal lineage suppression.
Molecular and cellular biology Mar, 2011 | Pubmed ID: 21199918
Non-cell-autonomous planar cell polarity propagation in the auditory sensory epithelium of vertebrates.
Developmental biology Apr, 2011 | Pubmed ID: 21255565
Wnts and Wnt inhibitors do not influence axon outgrowth from chicken statoacoustic ganglion neurons.
Hearing research Aug, 2011 | Pubmed ID: 21530628
Members of the BMP, Shh and FGF morphogen families promote chicken statoacoustic ganglion neurite outgrowth and neuron survival in vitro.
Developmental neurobiology Oct, 2011 | Pubmed ID: 22006861
Shaping sound in space: the regulation of inner ear patterning.
Development (Cambridge, England) Jan, 2012 | Pubmed ID: 22186725
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