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Journal of Neuroscience Methods|August 24, 2005
Efficient quantification of afferent cochlear ultrastructure using design-based stereologyHoward W Francis, Alejandro Rivas, Mohamed Lehar, et al.Neurobiology of Aging|June 29, 2010
Age-related neuronal loss in the cochlea is not delayed by synaptic modulationDavid Jin, Kevin K Ohlemiller, Debin Lei, et al.The Journal of Comparative Neurology|October 11, 2012
3D model of frequency representation in the cochlear nucleus of the CBA/J mouseMichael A Muniak, Alejandro Rivas, Karen L Montey, et al.Hearing Research|June 28, 2020
Regulation of auditory plasticity during critical periods and following hearing lossDora Persic, Maryse E Thomas, Vassilis Pelekanos, et al.Hearing Research|July 12, 2003
Separate forms of pathology in the cochlea of congenitally deaf white catsDavid K Ryugo, Hugh B Cahill, Liana S Rose, et al.Brain Sciences|January 16, 2020
Expression and Localization of Kv1.1 and Kv3.1b Potassium Channels in the Cochlear Nucleus and Inferior Colliculus after Long-Term Auditory DeafferentationClara M Poveda, Maria L Valero, Marianny Pernia, et al.Molecular and Cellular Biology|October 1, 2004
PHR1, a PH domain-containing protein expressed in primary sensory neuronsShunbin Xu, Yanshu Wang, Haiqing Zhao, et al.Stem Cells (Dayton, Ohio)|July 18, 2009
Long-term, stable differentiation of human embryonic stem cell-derived neural precursors grafted into the adult mammalian neostriatumIgor Nasonkin, Vasiliki Mahairaki, Leyan Xu, et al.The Journal of Heredity|September 4, 2007
Four independent mutations in the feline fibroblast growth factor 5 gene determine the long-haired phenotype in domestic catsJames S Kehler, Victor A David, Alejandro A Schäffer, et al.Frontiers in Neurology|October 13, 2022
Noise-induced hearing loss vulnerability in type III intermediate filament peripherin gene knockout miceJennie M E Cederholm, Kristina E Parley, Chamini J Perera, et al.Pageof 7