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Molecular Mechanisms of Sensorineural Hearing Loss and Development of Inner Ear Therapeutics

Resumen/Descripción – provisto por la editorial

No disponible.

Palabras clave – provistas por la editorial

brain-derived neurotrophic factor; TrkB; inner ear; development; zebrafish; mitochondria dysfunction; reactive oxygen species; hypoxic; d-galactose; high-fat diet; aging; hearing loss; astrocytes; auditory brainstem; lateral superior olive; gap junctions; voltage-activated calcium channel 1.3; otoferlin; spontaneous activity; deafness; circadian dysregulation; clock genes; noise-induced hearing loss; sensory hair cells; synaptic ribbons; sensorineural hearing loss; hyperbaric oxygenation; adjunctive therapy; microRNAs; cochlear nucleus; inferior colliculus; neuroplasticity; noise-induced cochlear injury; cochlear rescue; otoprotection; adenosine A1 receptor; regulator of G protein signalling 4; CCG-4986; intratympanic drug delivery; potassium voltage-gated channel subfamily q member 4; potassium; nonsyndromic hearing loss; KCNQ4 activator; age-related hearing loss; selegiline; chronic oral treatment; hearing protection; mouse model; n/a

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Información

Tipo de recurso:

libros

ISBN electrónico

978-3-0365-1505-2

País de edición

Suiza