k Foetal inner ear hair cells, SEM Foetal inner ear hair cells. Coloured scanning electron micrograph SEM of hair cells in the organ of Corti of a foetus. This delicate structure in the cochlea of the inner ear converts sound vibrations into nerve impulses. The three rows of outer hair cells have Vshaped groups of stereocilia, each with a central kinocilium. In the foetus they are surrounded by numerous microvilli grey, which are resorbed in the adult. The hair cells are surrounded by endolymph fluid. As sound enters the ear it causes waves to form in the endolymph, which in turn cause these hairs to move. The movement is converted into nerve impulses that are passed to the brain. Stock Photo - Afloimages
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Foetal inner ear hair cells, SEM Foetal inner ear hair cells. Coloured scanning electron micrograph  SEM  of hair cells in the organ of Corti of a foetus. This delicate structure in the cochlea of the inner ear converts sound vibrations into nerve impulses. The three rows of outer hair cells have V shaped groups of stereocilia, each with a central kinocilium. In the foetus they are surrounded by numerous microvilli  grey , which are resorbed in the adult. The hair cells are surrounded by endolymph fluid. As sound enters the ear it causes waves to form in the endolymph, which in turn cause these hairs to move. The movement is converted into nerve impulses that are passed to the brain.
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Foetal inner ear hair cells, SEM

Foetal inner ear hair cells. Coloured scanning electron micrograph (SEM) of hair cells in the organ of Corti of a foetus. This delicate structure in the cochlea of the inner ear converts sound vibrations into nerve impulses. The three rows of outer hair cells have V-shaped groups of stereocilia, each with a central kinocilium. In the foetus they are surrounded by numerous microvilli (grey), which are resorbed in the adult. The hair cells are surrounded by endolymph fluid. As sound enters the ear it causes waves to form in the endolymph, which in turn cause these hairs to move. The movement is converted into nerve impulses that are passed to the brain.

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