Advanced search
SenseLab
SimToolDB
ModelDB Help
User account
Login
Register
Find models by
Model name
First author
Each author
Region(circuits)
Find models for
Cell type
Current
Receptor
Gene
Transmitters
Concept
Simulators
Methods
Find models of
Realistic Networks
Neurons
Electrical synapses (gap junctions)
Chemical synapses
Ion channels
Neuromuscular junctions
Axons
Pathophysiology
Other resources
SenseLab mailing list
ModelDB related resources
Computational neuroscience ecosystem
Models in a git repository
Competition for AP initiation sites in a circuit controlling simple learning (Cruz et al. 2007)
 
Download zip file
Help downloading and running models
Model Information
Model File
Citations
Model Views
Simulation Platform
Accession:
117459
"The spatial and temporal patterns of action potential initiations were studied in a behaving leech preparation to determine the basis of increased firing that accompanies sensitization, a form of non-associative learning requiring the S-interneurons. ... The S-interneurons, one in each ganglion and linked by electrical synapses with both neighbors to form a chain, are interposed between sensory and motor neurons. ... the single site with the largest initiation rate, the S-cell in the stimulated segment, suppressed initiations in adjacent ganglia. Experiments showed this was both because (1) it received the earliest, greatest input and (2) the delayed synaptic input to the adjacent S-cells coincided with the action potential refractory period. A compartmental model of the S-cell and its inputs showed that a simple, intrinsic mechanism of inexcitability after each action potential may account for suppression of impulse initiations. Thus, a non-synaptic competition between neurons alters synaptic integration in the chain. In one mode, inputs to different sites sum independently, whereas in another, synaptic input to a single site precisely specifies the overall pattern of activity."
Reference:
1 .
Cruz GE, Sahley CL, Muller KJ (2007) Neuronal competition for action potential initiation sites in a circuit controlling simple learning.
Neuroscience
148
:65-81
[
PubMed
]
Model Information
(Click on a link to find other models with that property)
Model Type:
Realistic Network;
Neuron or other electrically excitable cell;
Brain Region(s)/Organism:
Leech;
Cell Type(s):
Leech S cell;
Channel(s):
I Na,t;
I K,leak;
Gap Junctions:
Receptor(s):
Gene(s):
Transmitter(s):
Serotonin;
Simulation Environment:
NEURON;
Model Concept(s):
Action Potential Initiation;
Activity Patterns;
Spatio-temporal Activity Patterns;
Implementer(s):
Cruz, Ginny [gcruz at monell.org];
Search NeuronDB
for information about:
I Na,t
;
I K,leak
;
Serotonin
;
Download the displayed file
/
CruzEtAlS_cellModel
No5HT
plus5HT
readme.txt
mosinit.hoc
//moddir plus5HT/3cell load_file("nrngui.hoc") load_file("plus5HT/3cell/3cell.hoc")
Load Model View
Loading data, please wait...