Parasympathetic Motor Neurons

Parasympathetic motor neurons are autonomic neurons that regulate involuntary functions associated with rest, digestion, and energy conservation, making them essential to homeostasis. Their signaling typically follows a two-neuron pathway: preganglionic neurons arise in the brainstem or spinal cord and release acetylcholine onto nicotinic receptors in peripheral ganglia, while postganglionic neurons release acetylcholine onto muscarinic receptors in target organs. This system can slow heart rate, stimulate gastrointestinal activity, constrict pupils, and support glandular secretion. Studying parasympathetic motor neurons helps biologists understand autonomic control, neurological disorders, and the effects of drugs that modify cholinergic signaling.

Parasympathetic Motor Neurons - Related Videos

Education

JoVE Core - Biology

The Parasympathetic Nervous System

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2019

Overview The parasympathetic nervous system is one of the two major divisions of the autonomic nervous system. This parasympathetic system is responsible for regulating many unconscious functions, such as heart rate and digestion. It is composed of neurons located in both the brain and the peripheral nervous system that send their axons to target muscles, organs, and glands. The “Rest and Digest” System Activation of the parasympathetic system tends to have a relaxing effect on the body,...

Research

JoVE Journal - Neuroscience

Extracellularly Identifying Motor Neurons for a Muscle Motor Pool in Aplysia californica

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Cited by 23 •

2013

In animals with large identified neurons (e.g. mollusks), analysis of motor pools is done using intracellular techniques1,2,3,4. Recently, we developed a technique to extracellularly stimulate and record individual neurons in Aplysia californica5. We now describe a protocol for using this technique to uniquely identify and characterize motor neurons within a motor pool.

Intramuscular Injections Along the Motor End Plates to Shuttle Tracers Directly into Rat Motor Neurons

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2025

Source: Mohan, R., et al. Intramuscular Injections Along the Motor End Plates: A Minimally Invasive Approach to Shuttle Tracers Directly into Motor Neurons. J. Vis. Exp. (2015)This video demonstrates the targeted delivery of a fluorescent neuronal tracer into motor neurons via intramuscular injection at the motor end plates (MEPs). It outlines the steps involved in preparing the rat, injecting the tracer, and assessing labeled motor neurons for neurotherapeutic potential.

Intramuscular Injections Along the Motor End Plates: A Minimally Invasive Approach to Shuttle Tracers Directly into Motor Neurons

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Cited by 20 •

2015

The efficacy of intramuscular uptake and retrograde transport of molecules to corresponding motor neurons depends on the location of the injection sites with respect to the motor end plates (MEPs). Here, we describe how to locate MEPs on skeletal muscles to optimise retrograde transport of tracers into motor neurons.

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.

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