Primary Afferent Depolarization

Primary afferent depolarization (PAD) is a spinal neural process in which sensory nerve terminals become depolarized before they release neurotransmitter, shaping how incoming signals reach the central nervous system. It typically arises when GABAergic axo-axonic synapses activate GABA_A receptors on primary afferent terminals; because these terminals maintain a relatively high intracellular chloride concentration, chloride efflux produces depolarization that can shunt excitatory currents, reduce calcium entry, and limit transmitter release. PAD therefore contributes to presynaptic inhibition and sensory signal filtering. Studying this mechanism helps explain spinal control of pain, touch, and reflex pathways, while informing research on altered sensorimotor processing.

Primary Afferent Depolarization - Related Videos

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JoVE Journal - Neuroscience

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2017

Abnormal sensory function underlies visceral pain and other symptoms of functional and inflammatory bowel diseases. A protocol for the electrophysiological recording of the colonic afferent nerves in an ex vivo rat colorectum preparation is presented here.

Investigating Prolonged Depolarizing Afterpotential (PDA) in Drosophila Photoreceptors

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2025

This video demonstrates an experimental protocol to investigate the prolonged depolarizing afterpotential (PDA) in white-eyed Drosophila. The fly's eye is exposed to intense blue light pulses to convert the photopigment rhodopsin to metarhodopsin, initiating a signaling cascade that opens positive ion channels and causes membrane depolarization. Because blue light prevents the reconversion of metarhodopsin to rhodopsin, the continuous influx of positive ions results in sustained depolarization,...

Research

JoVE Journal - Neuroscience
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Postsynaptic Recordings at Afferent Dendrites Contacting Cochlear Inner Hair Cells: Monitoring Multivesicular Release at a Ribbon Synapse

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Cited by 26 •

2011

Whole-cell patch-clamp recordings from auditory nerve fiber dendrites at the inner hair cell ribbon synapse in the mammalian cochlea.

In Vitro Recording of Mesenteric Afferent Nerve Activity in Mouse Jejunal and Colonic Segments

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Cited by 8 •

2016

Mesenteric afferent nerves convey information from the gastrointestinal tract towards the brain regarding normal homeostasis as well as pathophysiology. Gastrointestinal afferent nerve activity can be assessed by mounting isolated intestinal segments with attached afferent nerves into an organ bath, isolating the nerve, and assessing basal as well as stimulated activity.

In vitro Functional Characterization of Mouse Colorectal Afferent Endings

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Cited by 21 •

2015

This video demonstrates a protocol for conducting single-fiber electrophysiological recordings on an in vitro mouse colorectum-nerve preparation.

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