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  2. Inner ear regeneration - Wikipedia

    en.wikipedia.org/wiki/Inner_Ear_Regeneration

    There are two identified mechanisms behind hair cell regeneration; the first is that supporting cells re-enter the mitotic cycle to create and differentiate new hair cells. [8] The second process is the direct transdifferentiation of supporting cells into hair cells, which occurs via a change in the gene expression profile of supporting cells. [8]

  3. Hensen's cell - Wikipedia

    en.wikipedia.org/wiki/Hensen's_cell

    [5] [6] Furthermore, Hensen's cells are also able to regenerate the damaged hair cells in some vertebrates; they undergo phagocytosis to eject the dead or injured hair cells, and reproduce both new hair cells and supporting cells into the cell cycle. One of the reasons is that the supporting cells are differentiated by the embryonic hair cells ...

  4. Cochlea - Wikipedia

    en.wikipedia.org/wiki/Cochlea

    Three rows consist of outer hair cells (OHCs) and one row consists of inner hair cells (IHCs). The inner hair cells provide the main neural output of the cochlea. The outer hair cells, instead, mainly 'receive' neural input from the brain, which influences their motility as part of the cochlea's mechanical "pre-amplifier".

  5. Hair cell - Wikipedia

    en.wikipedia.org/wiki/Hair_cell

    The cell cycle inhibitor p27kip1 has also been found to encourage regrowth of cochlear hair cells in mice following genetic deletion or knock down with siRNA targeting p27. [36] [37] Research on hair cell regeneration may bring us closer to clinical treatment for human hearing loss caused by hair cell damage or death.

  6. Organ of Corti - Wikipedia

    en.wikipedia.org/wiki/Organ_of_Corti

    The organ of Corti is located in the scala media of the cochlea of the inner ear between the vestibular duct and the tympanic duct and is composed of mechanosensory cells, known as hair cells. [2] Strategically positioned on the basilar membrane of the organ of Corti are three rows of outer hair cells (OHCs) and one row of inner hair cells ...

  7. Sensorineural hearing loss - Wikipedia

    en.wikipedia.org/wiki/Sensorineural_hearing_loss

    Hair cell regeneration using stem cell and gene therapy is years or decades away from being clinically feasible. [28] However, studies are currently underway on the subject, with the first FDA-approved trial beginning in February 2012. [29]

  8. Stereocilia (inner ear) - Wikipedia

    en.wikipedia.org/wiki/Stereocilia_(inner_ear)

    In the semicircular canals, the hair cells are found in the crista ampullaris, and the stereocilia protrude into the ampullary cupula. Here, the stereocilia are all oriented in the same direction. In the otoliths, the hair cells are topped by small, calcium carbonate crystals called otoconia. Unlike the semicircular ducts, the kinocilia of hair ...

  9. Spiral ganglion - Wikipedia

    en.wikipedia.org/wiki/Spiral_ganglion

    The spiral (cochlear) ganglion is a group of neuron cell bodies in the modiolus, the conical central axis of the cochlea. These bipolar neurons innervate the hair cells of the organ of Corti . They project their axons to the ventral and dorsal cochlear nuclei as the cochlear nerve , a branch of the vestibulocochlear nerve (CN VIII).