Vestibular Kinesthetic Cues

Vestibular kinesthetic cues are sensory signals that inform the brain about head movement, body position, and motion, supporting spatial orientation and coordinated behavior. The vestibular system detects angular and linear acceleration through the semicircular canals and otolith organs, while kinesthetic receptors in muscles, tendons, and joints report limb movement and force; the nervous system integrates these inputs with visual information to estimate body state. In neuroscience, studying these cues clarifies balance, posture, motor learning, and sensory integration. This knowledge informs research on motion perception, virtual reality, neurological disorders, and rehabilitation strategies for impaired balance or movement.

Vestibular Kinesthetic Cues - Related Videos

Education

JoVE Science Education - Psychology

Spatial Cueing

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2023

Source: Laboratory of Jonathan Flombaum—Johns Hopkins University Attention refers to the limited human ability to select some information for processing at the expense of other stimuli in the environment. Attention operates in all sensory modalities: vision, hearing, touch, even taste and smell. It is most often studied in the visual domain though. A common way to study visual attention is with a spatial cueing paradigm. This paradigm allows researchers to measure the consequences of focusing...

Research

JoVE Journal - Cancer Research

A Unified Methodological Framework for Vestibular Schwannoma Research

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Cited by 17 •

2017

The goal of this protocol is to outline the collection and processing of human surgical samples for multiple downstream applications in vestibular schwannoma and Schwann cell research.

Behavioral Assessment of the Aging Mouse Vestibular System

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Cited by 48 •

2014

Motor control and balance performance are known to deteriorate with age. This paper presents a number of standard noninvasive behavioral tests with the addition of a simple rotary stimulus to challenge the vestibular system and show changes in balance performance in a murine model of aging.

Isolating Vestibular Ganglion Neurons From a Mouse Inner Ear

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2025

This video showcases a method for isolating vestibular neurons from a mouse pup's inner ear. It meticulously outlines the steps involved in dissecting the inner ear, harvesting the vestibular ganglion, and subsequently dissociating the ganglion into single cells. These cells are then cultured on glass-bottom dishes to establish a vestibular neuron culture.

Primary Culture of Human Vestibular Schwannomas

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Cited by 13 •

2014

Vestibular Schwannomas (VSs) are non-malignant tumors of Schwann cell (SC) origin, associated with mutations in the NF2 tumor suppressor gene. We report a reproducible, efficient protocol for primary human VS cell culture that allows for molecular and cellular experimental manipulation and analysis and recapitulates the heterogeneous nature of human disease.

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