Somatosensory Cues

Somatosensory cues are sensory signals generated by the body that inform the brain about touch, pressure, temperature, pain, and the position or movement of body parts. Specialized receptors in the skin, muscles, joints, and internal tissues convert physical changes into neural signals, which travel through peripheral nerves and spinal pathways for processing in the brain. In behavior, these cues guide posture, locomotion, object manipulation, protective responses, and interactions with the environment. Studying somatosensory processing helps researchers explain how organisms coordinate movement, adapt to changing conditions, and respond when sensory feedback is altered by injury, disease, or experimental manipulation.

Somatosensory 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 - Neuroscience

Somatosensory Event-related Potentials from Orofacial Skin Stretch Stimulation

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Cited by 4 •

2015

This paper introduces a method for obtaining somatosensory event-related potentials following orofacial skin stretch stimulation. The current method can be used to evaluate the contribution of somatosensory afferents to both speech production and speech perception.

Obtaining Somatosensory Stimulation-Related Signals from Orofacial Skin Stretching

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2025

This video demonstrates the recording of somatosensory stimulation-related signals through orofacial skin stretch using an electroencephalography (EEG) cap equipped with electrodes to monitor brain activity and a robotic device that produces the skin stretch.

Optogenetic Activation of Zebrafish Somatosensory Neurons using ChEF-tdTomato

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Cited by 6 •

2013

Optogenetic techniques have made it possible to study the contribution of specific neurons to behavior. We describe a method in larval zebrafish for activating single somatosensory neurons expressing a channelrhodopsin variant (ChEF) with a diode-pumped solid state (DPSS) laser and recording the elicited behaviors with a high-speed video camera.

Measuring Sensitivity to Viewpoint Change with and without Stereoscopic Cues

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Cited by 1 •

2013

We discuss a novel method forviewpoint-rotation of visual stimuli, and demonstrate using a mirror stereoscopethe three-dimensional percept of rotation-in-depth. The technique can be used to investigate the role of stereoscopic cues in encoding viewpoint-rotated figures.

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