Utricle Saccule

The utricle and saccule are otolith organs in the inner ear that detect head position, gravity, and linear acceleration, supporting balance and spatial orientation. Each contains a sensory epithelium called a macula, where hair cells project into a gelatinous membrane topped with calcium carbonate crystals called otoconia; changes in gravity or movement shift this membrane and bend the hair cells, altering vestibular nerve signals. Together, these organs help coordinate posture, eye movements, and stable vision during motion. Studying their structure and function informs research on vestibular disorders, balance impairment, motion perception, and inner-ear development.

Utricle Saccule - 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.

Gross and Fine Dissection of Inner Ear Sensory Epithelia in Adult Zebrafish (Danio rerio)

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Cited by 25 •

2009

The inner ear sensory epithelium of adult zebrafish is a good model system for understanding the mechanisms of hair cell regeneration in adult vertebrates. This protocol demonstrates the fine dissection of the epithelia, through which we can get tissue samples for studying the regenerative events at cellular and subcellular levels.

Research

JoVE Journal - Neuroscience
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Patch Clamp Recordings in Inner Ear Hair Cells Isolated from Zebrafish

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Cited by 9 •

2012

The purpose of this video is to demonstrate procedures for obtaining healthy, intact hair cells from the inner ear organs of adult zebrafish and then using them for patch clamp studies aimed at characterizing the biophysical properties of their voltage-gated channels.

Near Infrared (NIr) Light Increases Expression of a Marker of Mitochondrial Function in the Mouse Vestibular Sensory Epithelium

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Cited by 4 •

2015

Mitochondrial dysfunction is a hallmark of cellular senescence. This paper uses non-invasive near-infrared (NIr) treatment to improve mitochondrial function in the aging mouse vestibular sensory epithelium.

An Isolated Semi-intact Preparation of the Mouse Vestibular Sensory Epithelium for Electrophysiology and High-resolution Two-photon Microscopy

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Cited by 5 •

2013

Analysis of vestibular hair cell function is complicated by their location deep within the hardest part of the skull, the petrous temporal bone. Most functional hair cell studies have used acutely isolated hair cells. Here we describe a semi-intact preparation of mouse vestibular epithelium for electrophysiological and two-photon microscopy studies.

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