Mechanics of the Mammalian Cochlea.¶
Robles, L., & Ruggero, M. A. (2001). Mechanics of the Mammalian Cochlea. Physiological Reviews, 81(3), 1305-1352.
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Primes¶
- Harmonic Distortion
- In neuroscience and sensory physiology, nonlinear neural gain generates distortion products: the cochlea's nonlinear mechanics produce combination tones (audible sum-and-difference frequencies physically present in the inner ear but absent from the acoustic input), and nonlinear transduction throughout sensory systems richens the spectrum of a stimulus.
This sourceDescribes cochlear nonlinear mechanics generating distortion-product (combination-tone) frequencies physically present in the inner ear but absent from the acoustic input.
- In neuroscience and sensory physiology, nonlinear neural gain generates distortion products: the cochlea's nonlinear mechanics produce combination tones (audible sum-and-difference frequencies physically present in the inner ear but absent from the acoustic input), and nonlinear transduction throughout sensory systems richens the spectrum of a stimulus.
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