Evoked mechanical responses of isolated cochlear outer hair cells.
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Summary
The microarchitecture of the organ of Corti permits length changes of outer hair cells in a manner that could significantly influence the mechanics of the cochlear partition and thereby contribute to the exquisite sensitivity of mammalian hearing.
- Type
- article
- Published
- 1985-01-11
- Cited by
- 1,824
- References
- 12
- OpenAlex
- https://openalex.org/W2074276238
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:20374061
Keywords
Hair cell, Depolarization, Transcellular, Organ of Corti, Stimulation
References
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- Efferent inhibition in the cochlea related to hair-cell dc activity: study of postsynaptic activity of the crossed olivocochlear fibres in the cat.
- Cochlear transduction: an integrative model and review.
- Voltage‐activated and calcium‐activated currents studied in solitary rod inner segments from the salamander retina
- Cochlear anatomy related to cochlear micromechanics. A review.
- An active process in cochlear mechanics.
- Stimulated acoustic emissions from within the human auditory system.
- Efferent neural control of cochlear mechanics? Olivocochlear bundle stimulation affects cochlear biomechanical nonlinearity.
- An active cochlear model showing sharp tuning and high sensitivity.
- Changes in endolymphatic potential and crossed olivocochlear bundle stimulation alter cochlear mechanics.
- Neurotransmitters in the cochlea and the cochlear nucleus.
- Neurotransmission in the auditory system: a primer for pharmacologists.
Cited by
- Sensory transduction and frequency selectivity in the basal turn of the guinea-pig cochlea.
- High-frequency two-tone distortions from the Ear of the mustached bat,Pteronotus parnellii reflect enhanced cochlear tuning
- Functional and morphological comparisons between cochlear outer hair cells and muscle tissues in the guinea-pig.
- The organ of Corti in the bat Hipposideros bicolor.
- Modeling rapid waveform compression on the basilar membrane as multiple-bandpass-nonlinearity filtering.
- Cochlear nonlinearity and gain control as determinants of the response of primary auditory neurons to harmonic complexes.
- Potassium-depolarization induces motility in isolated outer hair cells by an osmotic mechanism.
- Speculations about noise and the evolution of vertebrate hearing.
- Elevation of auditory thresholds by spontaneous cochlear oscillations
- A piezoelectric model of outer hair cell function.
- Human otosclerotic bone-derived peptide decreases the gain of the electromotility in isolated outer hair cells.
- Quantitative relationship of carboplatin dose to magnitude of inner and outer hair cell loss and the reduction in distortion product otoacoustic emission amplitude in chinchillas.
- The origin of short-latency transient-evoked otoacoustic emissions
- Changes in cochlear mechanics during vocalization: evidence for a phasic medial efferent effect.
- Developmental failure in cochlear hair cells from mouse models of Usher syndrome and the identification of an acid sensitive ionic current in Inner and Outer hair cells
- Effect of sleep stages on synchronized spontaneous otoacoustic emissions in pre-term neonates.
- Non-uniform mapping of stress-induced, motility-related charge movement in the outer hair cell plasma membrane
- What Drives Mechanical Amplification in the Mammalian Cochlea?
- Hair-cell mechanotransduction and cochlear amplification.
- Effects of tarantula toxin GsMTx4 on the membrane motor of outer hair cells.
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