Hypocretin and Locus Coeruleus model neurons (Carter et al 2012)

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Conductance based model of the hypocretin neurons (HCRT) and another one of the Locus Coeruleus one (LC). The HCRT drive the LCs via the HCRT receptor on the LCs. The LCs lead to the awakening of the mice if the number of spikes raises over 10 spikes in 10 seconds window.
1 . Carter ME, Brill J, Bonnavion P, Huguenard JR, Huerta R, de Lecea, L (2012) Mechanism for Hypocretin-mediated sleep-to-wake transitions PNAS
Model Information (Click on a link to find other models with that property)
Model Type: Axon; Channel/Receptor;
Brain Region(s)/Organism:
Cell Type(s): Locus Coeruleus neuron;
Channel(s): I Na,t; I T low threshold; I A; I K; I K,Ca; I Calcium;
Gap Junctions:
Simulation Environment: C or C++ program;
Model Concept(s):
Implementer(s): Huerta, Ramon [rhuerta at ucsd.edu];
Search NeuronDB for information about:  I Na,t; I T low threshold; I A; I K; I K,Ca; I Calcium;
CC = gcc 
CFLAGS= -O3 -ffast-math
LDFLAGS=-lm -lcvode -lcvodeserial

OBJECTS =  hcrt_cvode.o LC_SFO.o rgenerator.o

	$(CC) $(CFLAGS) -o lc  LC_SFO.o rgenerator.o $(LDFLAGS)

	$(CC) $(CFLAGS) -o hcrt hcrt_cvode.o rgenerator.o $(LDFLAGS)

all : LC HCRT

clean :
	rm -f *.o LC HCRT

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