Spatial and age-dependent hair cell generation in the postnatal mammalian utricle

Z Gao, MC Kelly, D Yu, H Wu, X Lin, F Chi… - Molecular neurobiology, 2016 - Springer
Loss of vestibular hair cells is a common cause of balance disorders. Current treatment
options for bilateral vestibular dysfunction are limited. During development, atonal homolog …

Spatial and Age-Dependent Hair Cell Generation in the Postnatal Mammalian Utricle

Z Gao, MC Kelly, D Yu, H Wu, X Lin… - Molecular …, 2016 - search.proquest.com
Loss of vestibular hair cells is a common cause of balance disorders. Current treatment
options for bilateral vestibular dysfunction are limited. During development, atonal homolog …

Spatial and Age-Dependent Hair Cell Generation in the Postnatal Mammalian Utricle

Z Gao, MC Kelly, D Yu, H Wu, X Lin, F Chi… - Molecular …, 2015 - infona.pl
Loss of vestibular hair cells is a common cause of balance disorders. Current treatment
options for bilateral vestibular dysfunction are limited. During development, atonal homolog …

Spatial and Age-Dependent Hair Cell Generation in the Postnatal Mammalian Utricle

Z Gao, MC Kelly, D Yu, H Wu, X Lin… - Molecular …, 2016 - pubmed.ncbi.nlm.nih.gov
Loss of vestibular hair cells is a common cause of balance disorders. Current treatment
options for bilateral vestibular dysfunction are limited. During development, atonal homolog …

Spatial and Age-Dependent Hair Cell Generation in the Postnatal Mammalian Utricle.

Z Gao, MC Kelly, D Yu, H Wu, X Lin, FL Chi… - Molecular …, 2015 - europepmc.org
Loss of vestibular hair cells is a common cause of balance disorders. Current treatment
options for bilateral vestibular dysfunction are limited. During development, atonal homolog …

[引用][C] Spatial and Age-Dependent Hair Cell Generation in the Postnatal Mammalian Utricle

Z Gao, MC Kelly, D Yu, H Wu, X Lin, F Chi… - Molecular neurobiology, 2016 - Springer