Modeling rapid waveform compression on the basilar membrane as multiple-bandpass-nonlinearity filtering.
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Summary
Correlations between model and biophysical data suggest that the multiple-bandpass-nonlinearity (MBNL) model represents a nonlinear mixing by outer hair cells of hydromechanical and electromechanical signals, and thus provides a quantitative tool for biophysical study of cochlear mechanisms.
- Type
- article
- Published
- 1990-11-01
- Cited by
- 94
- References
- 75
- OpenAlex
- https://openalex.org/W2292508
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:4763879
Keywords
Political science
References
- Peripheral Auditory Mechanisms
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- Representation of steady-state vowels in the temporal aspects of the discharge patterns of populations of auditory-nerve fibers.
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- USING AUDITORY FEEDBACK AND RHYTHMICITY FOR DIPHONE DISCRIMINATION OF DEGRADED SPEECH
- Periphear : a nonlinear active model of the auditory periphery
- Consonant discrimination of degraded speech using an efferent-inspired closed-loop cochlear model
- Predicting confusions and intelligibility of noisy speech
- Spectral processing by the peripheral auditory system: facts and models.
- A real-time implementation of the primary auditory neuron activities
- The effect of compression speed on intelligibility: simulated hearing-aid processing with and without original temporal fine structure information.
- Implementation of hearing aid signal processing algorithms on the TI DHP-100 platform
- Predicting lateralization performance at high frequencies from auditory-nerve spike timing
- Signal processing strategies and clinical outcomes for gain and waveform compression in hearing aids
- Estudio de la percepción tímbrica en sonidos con modulación mediante experimentos psicofísicos y modelado de la periferia auditiva
- Cochlear implant electrode stimulation strategy based on a human auditory model
- Two-tone suppression in the basilar membrane of the cochlea: mechanical basis of auditory-nerve rate suppression.
- The effect of basilar-membrane nonlinearity on the shapes of masking period patterns in normal and impaired hearing.
- A composite model of the auditory periphery for simulating responses to complex sounds.
- A non-linear efferent-inspired model of the auditory system; matching human confusions in stationary noise
- Further studies on the dual-resonance nonlinear filter model of cochlear frequency selectivity: responses to tones.
- Is Off-Frequency Overshoot Caused by Adaptation of Suppression?
- An FFT-Based Companding Front End for Noise-Robust Automatic Speech Recognition
- Two-tone rate suppression in auditory-nerve fibers: dependence on suppressor frequency and level.
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