CrossRef Text and Data Mining
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MicroRNA-183 Family in Inner Ear: Hair Cell Development and Deafness
Mohammad Reza Mahmoodian sani, Morteza Hashemzadeh-Chaleshtori, Massoud Saidijam, Mohammad-Saeid Jami, Payam Ghasemi-Dehkordi
J Audiol Otol. 2016;20(3):131-138.   Published online November 30, 2016
DOI: https://doi.org/10.7874/jao.2016.20.3.131

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MicroRNA-183 Family in Inner Ear: Hair Cell Development and Deafness
Journal of Audiology and Otology. 2016;20(3):131-138   Crossref logo
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AAAS meeting: Inner ear damage comes clear: Two-photon microscopy shows noise-induced hair cell loss
Science News. 2013;183(5):8-8   Crossref logo
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MicroRNA-183 family expression in hair cell development and requirement of microRNAs for hair cell maintenance and survival
Developmental Dynamics. 2011;240(4):808-819   Crossref logo
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Inner Ear Cells from Stem Cells: A Path Towards Inner Ear Cell Regeneration
Springer Handbook of Auditory Research. 2023;135-162   Crossref logo
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MicroRNA-183 Family Members Regulate Sensorineural Fates in the Inner Ear
The Journal of Neuroscience. 2010;30(9):3254-3263   Crossref logo
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Clinical Aspects of Inner Ear Deafness
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Correct Timing of Proliferation and Differentiation is Necessary for Normal Inner Ear Development and Auditory Hair Cell Viability
Developmental Dynamics. 2013;242(2):132-147   Crossref logo
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Hair Cell Regeneration in the Avian
Regenerative Medicine for the Inner Ear. 2014;181-188   Crossref logo
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Hair Cell Polarization in the Flatfish Inner Ear
Acta Zoologica. 1976;57(1):37-39   Crossref logo
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Signaling regulating inner ear development: Cell fate determination, patterning, morphogenesis, and defects
Congenital Anomalies. 2015;55(1):17-25   Crossref logo
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