Primary Sensory Neurons

Primary sensory neurons are specialized nerve cells that detect changes in the internal or external environment and transmit this information to the central nervous system, forming the first neural link in sensation. Their peripheral endings convert mechanical, thermal, chemical, or damaging stimuli into receptor potentials; when threshold is reached, voltage-gated ion channels generate action potentials that travel along the axon to the spinal cord or brainstem. Cell bodies commonly reside in dorsal root or cranial sensory ganglia, while central terminals release neurotransmitters to activate second-order neurons. Studying primary sensory neurons clarifies touch, temperature, proprioception, and pain pathways, supporting research into neural coding, sensory disorders, and analgesic therapies.

Primary Sensory Neurons - Related Videos

Research

JoVE Journal - Neuroscience
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The Culture of Primary Motor and Sensory Neurons in Defined Media on Electrospun Poly-L-lactide Nanofiber Scaffolds

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Cited by 33 •

2011

Aligned electrospun fibers direct the growth of neurons in vitro and are a potential component of nerve regeneration scaffolds. We describe a procedure for preparing electrospun fiber substrates and the serum-free culture of primary rat E15 sensory (DRG) and motor neurons. Visualization of neurons by immunocytochemistry is also included.

Research

JoVE Journal - Biology

Preparation of Aplysia Sensory-motor Neuronal Cell Cultures

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Cited by 37 •

2009

Primary cultures of Aplysia sensory-motor neurons provide a model preparation for studying synapse formation and synaptic plasticity in vitro. This video demonstrates the identification and microdissection of sensory and motor neurons from Aplysia ganglia as well as the methods for establishing and maintaining sensory-motor neurons in culture.

Investigating the Origins of Sensory Neurons in the Dura Mater Using Fluorescence Microscopy

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2025

Source: Wang, J., et al. Visualizing the Calcitonin Gene-Related Peptide Immunoreactive Innervation of the Rat Cranial Dura Mater with Immunofluorescence and Neural Tracing. J. Vis. Exp. (2021). This video demonstrates a method to trace the origins of sensory neurons in the dura mater using fluorescence microscopy. A retrograde tracer is introduced into the exposed dura mater of an anesthetized rat. The tracer is taken up by sensory neuronal axons and travels retrogradely to their cell bodies...

In Vivo Calcium Imaging of Neuronal Ensembles in Networks of Primary Sensory Neurons in Intact Trigeminal Ganglia

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2025

This protocol describes in vivo GCaMP calcium imaging of intact trigeminal ganglion (TG) neurons. This description includes TG exposure surgery, in vivo confocal microscopy imaging of TG neurons, application of somatic stimuli during TG neurons microscopic imaging, and analysis of in vivo GCaMP calcium imaging data.

Education

JoVE Science Education - Advanced Biology

Primary Neuronal Cultures

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2023

The complexity of the brain often requires neuroscientists to use a simpler system for experimental manipulations and observations. One powerful approach is to generate a primary culture by dissecting nervous system tissue, dissociating it into single cells, and growing those cells in vitro. Primary cultures make neurons and glia easily accessible to the experimental tools required for techniques like genetic manipulation and time-lapse imaging. Furthermore, these cultures represent a highly...

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