Thalamus

The thalamus is a paired structure in the diencephalon that routes and regulates information flowing between many brain regions, especially the cerebral cortex, making it central to sensory perception, movement, attention, and consciousness. Its specialized nuclei receive signals from the body and brain, filter or integrate them, and send organized projections to cortical areas; reciprocal thalamocortical circuits also help generate rhythms associated with sleep and wakefulness. Studying the thalamus helps explain how the brain selects relevant stimuli, coordinates motor commands, and maintains conscious states, while providing insight into conditions such as epilepsy, pain, stroke, and disorders of consciousness.

Thalamus - Related Videos

Education

JoVE Core - Anatomy and Physiology

Diencephalon: Thalamus and Information Relay

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2025

The thalamus, often called “the gateway to the cerebral cortex,” is vital in processing and directing sensory and motor signals throughout the brain. Almost all inputs destined for the cerebral cortex, except for olfactory signals, are relayed through the thalamus. The thalamus is a sophisticated relay station, channeling information from various brain regions to the cerebral cortex, as well as a filter, prioritizing certain signals over others based on current physiological states or needs.

Research

JoVE EoE - Neuronal Culture Techniques

Generation of Medial Thalamus-Anterior Cingulate Cortex Slices from Mouse Brains

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2025

The video demonstrates the preparation of medial thalamus-anterior cingulate cortex (MT-ACC) slices from mouse brains. A mouse's brain is dissected, cuts are made to expose the MT-ACC pathway, and slices are generated using a vibratome. The MT-ACC slices are then maintained in oxygenated artificial cerebrospinal fluid.

Cortex-, Hippocampus-, Thalamus-, Hypothalamus-, Lateral Septal Nucleus- and Striatum-specific In Utero Electroporation in the C57BL/6 Mouse

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Cited by 14 •

2016

This protocol describes in detail how to specifically transfect different regions in the C57BL/6 central nervous system via in utero electroporation. Included in this protocol are detailed instructions for transfections of regions that develop into the cortex, hippocampus, thalamus, hypothalamus, lateral septal nucleus and striatum.

Research

JoVE Journal - Neuroscience
Free Sample

Mouse in Utero Electroporation: Controlled Spatiotemporal Gene Transfection

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Cited by 49 •

2011

A gene transfer method into the developing mouse brain is described by using a unique surgical method and special shape of electrodes. This unique technique allows transfection of plasmid DNA temporally and spatially, which will aid many neuroscientists in studying brain development.

Monitoring the Brain Cortex with a Multi-Electrode Array in Response to Seizure-Inducing Agents

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2025

In this video, the effects of transcranial direct-current stimulation (tDCS) on brain slices containing the anterior cingulate cortex (ACC) and thalamus regions are investigated, using a multi-electrode array (MEA) to measure electric signals. By delivering electric pulses and infusing seizure-inducing drugs, the study investigates the ACC response to seizures.

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