Javascript must be enabled to continue!
Development of convergent synaptic inputs to subpopulations of autonomic neurons
View through CrossRef
AbstractVisceromotor neurons in mammalian prevertebral sympathetic ganglia receive convergent synaptic inputs from spinal preganglionic neurons and peripheral intestinofugal neurons projecting from the enteric plexuses. Vasomotor neurons in the same ganglia receive only preganglionic inputs. How this pathway‐specific pattern of connectivity is established is unknown. We have used a combination of immunohistochemical, ultrastructural, and electrophysiological techniques to investigate the development of synaptic inputs onto visceromotor and vasomotor neurons in the celiac ganglion of guinea pigs. Functional synaptogenesis occurred primarily from early fetal (F30–F35) to midfetal (F36–F45) stages, after the neurochemical differentiation of vasomotor and visceromotor neurons but before establishment of their electrophysiological phenotypes. Intestinofugal inputs were detected only on presumptive visceromotor neurons located primarily in medial regions of the ganglion. The number of ultrastructurally identified synaptic profiles increased in parallel with functional synaptogenesis, especially in medial regions, where dendritic growth rates also were higher. However, the expression of immunoreactivity to choline acetyltransferase in the terminals of inputs was very low until late fetal stages, after functional transmission already had been established. These results show that peripheral intestinofugal neurons directly establish appropriate functional connections with their target visceromotor neurons simultaneously with the development of functional preganglionic inputs to both visceromotor and vasomotor neurons. It seems likely that synaptogenesis occurs independently of the neurochemical differentiation of the target neurons but is closely related to the pathway‐specific dendritic development of those neurons. J. Comp. Neurol. 447:218–233, 2002. © 2002 Wiley‐Liss, Inc.
Title: Development of convergent synaptic inputs to subpopulations of autonomic neurons
Description:
AbstractVisceromotor neurons in mammalian prevertebral sympathetic ganglia receive convergent synaptic inputs from spinal preganglionic neurons and peripheral intestinofugal neurons projecting from the enteric plexuses.
Vasomotor neurons in the same ganglia receive only preganglionic inputs.
How this pathway‐specific pattern of connectivity is established is unknown.
We have used a combination of immunohistochemical, ultrastructural, and electrophysiological techniques to investigate the development of synaptic inputs onto visceromotor and vasomotor neurons in the celiac ganglion of guinea pigs.
Functional synaptogenesis occurred primarily from early fetal (F30–F35) to midfetal (F36–F45) stages, after the neurochemical differentiation of vasomotor and visceromotor neurons but before establishment of their electrophysiological phenotypes.
Intestinofugal inputs were detected only on presumptive visceromotor neurons located primarily in medial regions of the ganglion.
The number of ultrastructurally identified synaptic profiles increased in parallel with functional synaptogenesis, especially in medial regions, where dendritic growth rates also were higher.
However, the expression of immunoreactivity to choline acetyltransferase in the terminals of inputs was very low until late fetal stages, after functional transmission already had been established.
These results show that peripheral intestinofugal neurons directly establish appropriate functional connections with their target visceromotor neurons simultaneously with the development of functional preganglionic inputs to both visceromotor and vasomotor neurons.
It seems likely that synaptogenesis occurs independently of the neurochemical differentiation of the target neurons but is closely related to the pathway‐specific dendritic development of those neurons.
J.
Comp.
Neurol.
447:218–233, 2002.
© 2002 Wiley‐Liss, Inc.
Related Results
Synaptic Integration
Synaptic Integration
Abstract
Neurons in the brain receive thousands of synaptic inputs from other neurons. Synaptic integration is the term used to describe how neu...
Synaptic Self-Organization of Spatio-Temporal Pattern Selectivity
Synaptic Self-Organization of Spatio-Temporal Pattern Selectivity
ABSTRACT
Spiking model neurons can be set up to respond selectively to specific spatio-temporal spike patterns by optimization of their input weights. It is unknown...
Inhibitory Motifs Quench Synchrony Induced by Excitatory Motifs in Biological Neuronal Networks
Inhibitory Motifs Quench Synchrony Induced by Excitatory Motifs in Biological Neuronal Networks
A
bstract
The connectivity in biological neuronal networks is known to deviate significantly from the random network (Erdős–Rényi...
The Utility of COMPASS-31 Questionnaire to Predict Autonomic Dysfunction in Patients With Cervical/Upper Thoracic Compressive Myelopathy
The Utility of COMPASS-31 Questionnaire to Predict Autonomic Dysfunction in Patients With Cervical/Upper Thoracic Compressive Myelopathy
Background:
Patients with cervical/upper thoracic compressive myelopathy may have autonomic dysfunction. The composite autonomic severity score (CASS) is the gold stand...
Taste responses of cortical neurons in freely ingesting rats
Taste responses of cortical neurons in freely ingesting rats
1. Activities of 35 taste-responsive neurons in the cortical gustatory area were recorded with chronically implanted fine wires in freely ingesting Wistar rats. Quantitative analys...
Energetics of stochastic BCM type synaptic plasticity and storing of accurate information
Energetics of stochastic BCM type synaptic plasticity and storing of accurate information
Abstract
Excitatory synaptic signaling in cortical circuits is thought to be metabolically expensive. Two fundamental brain functions, learning and memory, are asso...
BDNF-TrkB signaling promotes synaptic GluN2A-NMDA receptor expression and network hyperexcitability in cultured hippocampal neurons and during status epilepticus
BDNF-TrkB signaling promotes synaptic GluN2A-NMDA receptor expression and network hyperexcitability in cultured hippocampal neurons and during status epilepticus
Abstract
Brain-derived neurotrophic factor (BDNF) is a key modulator of synaptic function, acting through activation of TrkB receptors. This neurotrophic factor med...
Non-synaptic plasticity enables memory-dependent local learning
Non-synaptic plasticity enables memory-dependent local learning
Abstract
Synaptic plasticity is essential for memory formation and learning in the brain. In addition, recent results indicate that non-synaptic plasticity processe...

