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  2. Cochlea - Wikipedia

    en.wikipedia.org/wiki/Cochlea

    The cochlea is a portion of the inner ear that looks like a snail shell (cochlea is Greek for snail). [5] The cochlea receives sound in the form of vibrations, which cause the stereocilia to move. The stereocilia then convert these vibrations into nerve impulses which are taken up to the brain to be interpreted.

  3. Tonotopy - Wikipedia

    en.wikipedia.org/wiki/Tonotopy

    Tonotopic organization in the cochlea forms throughout pre- and post-natal development through a series of changes that occur in response to auditory stimuli. [7] Research suggests that the pre-natal establishment of tonotopic organization is partially guided by synaptic reorganization; however, more recent studies have shown that the early changes and refinements occur at both the circuit and ...

  4. Temporal theory (hearing) - Wikipedia

    en.wikipedia.org/wiki/Temporal_theory_(hearing)

    The temporal theory of hearing, also called frequency theory or timing theory, states that human perception of sound depends on temporal patterns with which neurons respond to sound in the cochlea. Therefore, in this theory, the pitch of a pure tone is determined by the period of neuron firing patterns—either of single neurons, or groups as ...

  5. Inner ear - Wikipedia

    en.wikipedia.org/wiki/Inner_ear

    The cochlea propagates these mechanical signals as waves in the fluid and membranes and then converts them to nerve impulses which are transmitted to the brain. [ 4 ] The vestibular system is the region of the inner ear where the semicircular canals converge, close to the cochlea.

  6. Critical band - Wikipedia

    en.wikipedia.org/wiki/Critical_band

    The cochlea is a snail-shaped formation that enables sound transmission via a sensorineural route, rather than through a conductive pathway. [11] The cochlea is a complex structure, consisting of three layers of fluid.

  7. Volley theory - Wikipedia

    en.wikipedia.org/wiki/Volley_theory

    Helmholtz claimed that the cochlea contained individual fibers for analyzing each pitch and delivering that information to the brain. Many followers revised and added to Helmholtz's theory and the consensus soon became that high frequency sounds were encoded near the base of the cochlea and that middle frequency sounds were encoded near the apex.

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  9. Auditory cortex - Wikipedia

    en.wikipedia.org/wiki/Auditory_cortex

    The purpose of this frequency map (known as a tonotopic map) likely reflects the fact that the cochlea is arranged according to sound frequency. The auditory cortex is involved in tasks such as identifying and segregating "auditory objects" and identifying the location of a sound in space. For example, it has been shown that A1 encodes complex ...