Physiological noise level enhances mechanoelectrical transduction in hair cells

Author:

Jaramillo Fernán,Wiesenfeld Kurt

Publisher

Elsevier BV

Subject

General Mathematics,General Physics and Astronomy,Statistical and Nonlinear Physics,Applied Mathematics

Reference24 articles.

1. Voltage sensitivity of the adaptation rate in isolated vertebrate hair cells;Assad;Biophys J,1988

2. Noise-enhanced information transmission in rat SA1 cutaneous mechanoreceptors via aperiodic stochastic resonance;Collins;J Neurophys,1996

3. Noise in human muscle spindles;Cordo;Nature,1996

4. Kinetics of the receptor current in bullfrog saccular hair cells;Corey;J Neurosci,1983

5. Response characteristics of mammalian cochlear hair cells;Dallos;J Neurosci,1985

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3. Modeling auditory transducer dynamics;Current Opinion in Otolaryngology & Head & Neck Surgery;2009-10

4. Suprathreshold Stochastic Resonance in Mechanoelectrical Transduction of Hair Cells;Chinese Physics Letters;2008-04

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