Superior Cervical Ganglion

The superior cervical ganglion is the largest sympathetic ganglion in the neck and a key relay in the autonomic nervous system, linking spinal cord signals with structures of the head and neck. Preganglionic neurons arising from upper thoracic spinal segments travel through the sympathetic trunk and synapse on postganglionic neurons in the ganglion; their axons then follow the internal and external carotid arteries to reach targets including the eye, salivary glands, and cranial blood vessels. In neuroscience, this pathway provides a framework for understanding sympathetic regulation of pupil dilation, vascular tone, and sweating, while abnormalities or injury can contribute to Horner syndrome and help localize lesions in clinical research.

Superior Cervical Ganglion - Related Videos

Research

JoVE Journal - Biology

Protocol for Culturing Sympathetic Neurons from Rat Superior Cervical Ganglia (SCG)

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Cited by 43 •

2009

This is a protocol describing how to isolate and culture primary sympathetic neurons from superior cervical ganglia (SCG) of newborn rat pups.

Surgical Technique for Superior Cervical Ganglionectomy in a Murine Model

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Cited by 2 •

2022

The present protocol describes a mouse model of the ablation of adrenergic innervation by identifying and resecting the superior cervical ganglion.

Retrograde Labeling of Retinal Ganglion Cells by Application of Fluoro-Gold on the Surface of Superior Colliculus

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Cited by 40 •

2008

This video describes the method of retrograde labeling of RGC by applying fluoro-gold (FG) on the surface of superior colliculus (SC). Technique involves drilling the skull, aspirating the cortex, and applying gelatin sponge over entire dorsal surface of SC.

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.

An Optic Nerve Crush Injury Murine Model to Study Retinal Ganglion Cell Survival

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Cited by 64 •

2011

This protocol shows how to retrogradely label retinal ganglion cells, and how to subsequently make an optic nerve crush injury in order to analyze retinal ganglion cell survival and apoptosis. It is an experimental disease model for different types of optic neuropathy, including glaucoma.

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