نتایج جستجو برای: inner auditory hair cell

تعداد نتایج: 1837954  

2016
Anping Xia Xiaofang Liu Patrick D. Raphael Brian E. Applegate John S. Oghalai

Frequency tuning within the auditory papilla of most non-mammalian species is electrical, deriving from ion-channel resonance within their sensory hair cells. In contrast, tuning within the mammalian cochlea is mechanical, stemming from active mechanisms within outer hair cells that amplify the basilar membrane travelling wave. Interestingly, hair cells in the avian basilar papilla demonstrate ...

Journal: :The Journal of biological chemistry 2007
Sonja J Pyott Andrea L Meredith Anthony A Fodor Ana E Vázquez Ebenezer N Yamoah Richard W Aldrich

Large conductance voltage- and calcium-activated potassium (BK) channels are important for regulating many essential cellular functions, from neuronal action potential shape and firing rate to smooth muscle contractility. In amphibians, reptiles, and birds, BK channels mediate the intrinsic frequency tuning of the cochlear hair cell by an electrical resonance mechanism. In contrast, inner hair ...

2011
Manuel S. Malmierca David K. Ryugo

AI primary auditory cortex AC auditory cortex BDA biotinylated dextran amines BF best frequency CNC cochlear nuclear complex CNIC central of the inferior colliculus DCN dorsal cochlear nucleus DCIC dorsal cortex of the inferior colliculus DNLL dorsal nucleus of the lateral lemniscus DSCF Doppler-shifted constant frequency ECIC external cortex of the inferior colliculus ES electrical stimulation...

Journal: :Development 2004
Kate F Barald Matthew W Kelley

The highly orchestrated processes that generate the vertebrate inner ear from the otic placode provide an excellent and circumscribed testing ground for fundamental cellular and molecular mechanisms of development. The recent pace of discovery in developmental auditory biology has been unusually rapid, with hundreds of papers published in the past 4 years. This review summarizes studies address...

2012
Anya Rudnicki Karen B Avraham

MicroRNAs (miRNAs) are small non-coding RNAs that regulate gene expression through the RNA interference (RNAi) pathway and by inhibition of mRNA translation. miRNAs first made their appearance in the auditory and vestibular systems in 2005, with the discovery of a triad of hair cell-specific miRNAs later found to be involved in both human and mouse deafness. Since then, miRNAs have been implica...

2011
Benjamin Kopecky Bernd Fritzsch

Hearing loss affects hundreds of millions of people worldwide by dampening or cutting off their auditory connection to the world. Current treatments for sensorineural hearing loss (SNHL) with cochlear implants are not perfect, leaving regenerative medicine as the logical avenue to a perfect cure. Multiple routes to regeneration of damaged hair cells have been proposed and are actively pursued. ...

Journal: :Histology and histopathology 2011
M M Conde de Felipe A Feijoo Redondo J García-Sancho T Schimmang M B Durán Alonso

Sensorineural hearing loss is the most common sensory disorder in humans. It is primarily due to the degeneration of highly specialised mechanosensory cells in the cochlea, the so-called hair cells. Hearing problems can also be caused or further aggravated by the death of auditory sensory neurons that convey the information from the hair cells to the brain stem. Despite the discovery of stem/pr...

Journal: :The Journal of neuroscience : the official journal of the Society for Neuroscience 2012
Stuart L Johnson Helen J Kennedy Matthew C Holley Robert Fettiplace Walter Marcotti

Spontaneous Ca(2+)-dependent electrical activity in the immature mammalian cochlea is thought to instruct the formation of the tonotopic map during the differentiation of sensory hair cells and the auditory pathway. This activity occurs in inner hair cells (IHCs) during the first postnatal week, and the pattern differs along the cochlea. During the second postnatal week, which is before the ons...

2015
Kaidi D. Zhang Michelle L. Stoller Donna M. Fekete Jonathan I. Matsui

The miR-183 family consists of 3 related microRNAs (miR-183, miR-96, miR-182) that are required to complete maturation of primary sensory cells in the mammalian inner ear. Because the level of these microRNAs is not uniform across hair cell subtypes in the murine cochlea, the question arises as to whether hair cell phenotypes are influenced by microRNA expression levels. To address this, we use...

Journal: :The Journal of neuroscience : the official journal of the Society for Neuroscience 2001
A Rusch L Ng R Goodyear D Oliver I Lisoukov B Vennstrom G Richardson M W Kelley D Forrest

The deafness caused by early onset hypothyroidism indicates that thyroid hormone is essential for the development of hearing. We investigated the underlying roles of the TRalpha1 and TRbeta thyroid hormone receptors in the auditory system using receptor-deficient mice. TRalpha1 and TRbeta, which act as hormone-activated transcription factors, are encoded by the Thra and Thrb genes, respectively...

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