Matthew W. Kelley

Intramural Program National Institute on Deafness and Other Communication Disorders, Bethesda, MD, United States 
"Matthew Kelley"
Mean distance: 16.04 (cluster 52)
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Kolla L, Kelly MC, Mann ZF, et al. (2020) Characterization of the development of the mouse cochlear epithelium at the single cell level. Nature Communications. 11: 2389
Rudolf MA, Andreeva A, Kozlowski MM, et al. (2020) YAP Mediates Hair Cell Regeneration in Balance Organs of Chickens, But LATS Kinases Suppress Its Activity in Mice. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience
Montcouquiol M, Kelley MW. (2019) Development and Patterning of the Cochlea: From Convergent Extension to Planar Polarity. Cold Spring Harbor Perspectives in Medicine
McInturff S, Burns JC, Kelley MW. (2018) Characterization of spatial and temporal development of Type I and Type II hair cells in the mouse utricle using new cell-type-specific markers. Biology Open. 7
Honda K, Kim SH, Kelly MC, et al. (2017) Molecular architecture underlying fluid absorption by the developing inner ear. Elife. 6
Burns JC, Kelly MC, Hoa M, et al. (2015) Single-cell RNA-Seq resolves cellular complexity in sensory organs from the neonatal inner ear. Nature Communications. 6: 8557
May-Simera HL, Petralia RS, Montcouquiol M, et al. (2015) Ciliary proteins Bbs8 and Ift20 promote planar cell polarity in the cochlea. Development (Cambridge, England). 142: 555-66
Raft S, Coate TM, Kelley MW, et al. (2014) Pou3f4-mediated regulation of ephrin-b2 controls temporal bone development in the mouse. Plos One. 9: e109043
Thiede BR, Mann ZF, Chang W, et al. (2014) Retinoic acid signalling regulates the development of tonotopically patterned hair cells in the chicken cochlea. Nature Communications. 5: 3840
Mann ZF, Thiede BR, Chang W, et al. (2014) A gradient of Bmp7 specifies the tonotopic axis in the developing inner ear. Nature Communications. 5: 3839
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