Bony Labyrinth Dissection

Bony labyrinth dissection is a specialized anatomical technique that exposes the inner ear’s osseous labyrinth, the dense temporal-bone system containing the cochlea, vestibule, and semicircular canals. By progressively removing bone while preserving delicate walls and landmarks, researchers can trace the spatial organization of these structures and relate them to the membranous labyrinth and nearby neurovascular anatomy. In neuroscience, this dissection supports study of auditory and vestibular anatomy, clarifies how mechanical stimuli reach sensory epithelia, and provides a foundation for interpreting imaging, surgical approaches, and experimental investigations of hearing, balance, and inner-ear disease.

Bony Labyrinth Dissection - Related Videos

Research

JoVE Journal - Neuroscience

Dissection of Adult Mouse Utricle and Adenovirus-mediated Supporting-cell Infection

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Cited by 18 •

2012

Mechanosensory hair cells are the receptor cells of the inner ear. The best-characterized in vitro model system of mature mammalian hair cells utilizes organ cultures of utricles from adult mice. We present the dissection of the adult mouse utricle, and we demonstrate adenovirus-mediated infection of supporting cells in cultured utricles.

Whole Mount Dissection and Immunofluorescence of the Adult Mouse Cochlea

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Cited by 85 •

2016

We present a method to isolate the adult organ of Corti as three intact cochlear turns (apex, middle, and base). We also demonstrate a procedure for immunostaining with fluorescently tagged antibodies. Together these techniques allow the study of hair cells, supporting cells, and other cell types found in the cochlea.

Research

JoVE Journal - Biology
Free Sample

Dissection of Organs from the Adult Zebrafish

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Cited by 168 •

2010

This protocol describes a procedure for identifying and dissecting organs from the adult zebrafish.

Gross Dissection of the Stomach of the Lobster, Homarus Americanus

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Cited by 5 •

2009

We describe the gross dissection of the stomach of the American lobster (Homarus americanus).

Evaluation of Planar-Cell-Polarity Phenotypes in Ciliopathy Mouse Mutant Cochlea

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Cited by 8 •

2016

Primary cilia influence various signaling pathways. The mammalian cochlea is ideal for examining planar cell polarity (PCP) signaling. Cilia dysfunction affects cochlear outgrowth, cellular patterning and hair cell orientation, readouts of PCP. Our goal is to analyze PCP signaling in mouse cochlea via phenotypic analysis, immunohistochemistry and scanning electron microscopy.

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