Perturbation sensitivity implies high noise and suggests rate coding in cortex (London et al. 2010)

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Accession:144027
"... The network simulations were also based on a previously published model(Latham et al. 2000), but with modifications to allow the addition and detection of extra spikes (see Supplementary Information, section 7)."
Reference:
1 . London M, Roth A, Beeren L, Häusser M, Latham PE (2010) Sensitivity to perturbations in vivo implies high noise and suggests rate coding in cortex. Nature 466:123-7 [PubMed]
Model Information (Click on a link to find other models with that property)
Model Type: Realistic Network;
Brain Region(s)/Organism: Neocortex;
Cell Type(s):
Channel(s):
Gap Junctions:
Receptor(s):
Gene(s):
Transmitter(s):
Simulation Environment: C or C++ program;
Model Concept(s): Activity Patterns;
Implementer(s):
#
# Makefile for theta1d
#
DIR = .
LIBS = -lm

# directories to look in to find objects
DERIVS =    $(DIR)
NETWORK =   $(DIR)
PARAMS =    $(DIR)
OBJECTS =   $(DIR)
FUNCTIONS = $(DIR)

CC = g++
# CC = /opt/gcc-3.2.3/bin/g++
CFLAGS = -I$(DERIVS) -I$(OBJECTS) -I$(NETWORK) -I$(PARAMS) -I$(FUNCTIONS) -Wno-deprecated
C = $(CC) $(CFLAGS) -O -c

SRC = main.c
OBJ = main.o derivs.o network.o params.o rgauss.o runge_kutta.o lib.o

main:	$(OBJ)
	$(CC) -O $(CFLAGS) $(OBJ) $(LIBS) -o theta1d

main.o:	main.c $(OBJECTS)/float2.h
	$(C) main.c

derivs.o: $(DERIVS)/derivs.h $(DERIVS)/derivs.c
	$(C) $(DERIVS)/derivs.c

network.o: $(NETWORK)/network.h $(NETWORK)/network.c
	$(C) $(NETWORK)/network.c

params.o: $(PARAMS)/params.h $(PARAMS)/params.c
	$(C) $(PARAMS)/params.c

rgauss.o: $(OBJECTS)/rgauss.h $(OBJECTS)/rgauss.c
	$(C) $(OBJECTS)/rgauss.c

runge_kutta.o: $(OBJECTS)/runge_kutta.h $(OBJECTS)/runge_kutta.c
	$(C) $(OBJECTS)/runge_kutta.c

lib.o: $(FUNCTIONS)/lib.h
	$(C) $(FUNCTIONS)/lib.c

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