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� � � � � _ 0 / . ! � � � � � � � H 0 / � � � � � � � � � | J I 3 2 � � A @ � � � � � � � r q b a K 4 � � � � G � � q * � � � � ~ D http://www.neurhttp://www.neuron.yale.edu/phpbb/viewtopic.php?f=28&t=592 IT.mod to cnexp as per 20120109 updated SOLVE method in cadecay.mod to derivimplicit and IM.mod, rundemo.hoc gui is erased with the restart() procedure which was added to of xopen. Lastly, before the gui for each demo is started the previous be opened once per NEURON launch are now opened via load_file instead was replaced by a radio button panel, and any files which should only 3 demos to run in the same NEURON process. Thus the original button panel Note: 3/9/2002 Michael Hines made non-substantive changes to allow the 7/11/2005 Changes added which removes electrode on subsequent simulations. http://cns.iaf.cnrs-gif.fr email: Destexhe@iaf.cnrs-gif.fr France 91198 Gif-sur-Yvette, Avenue de la Terrasse, CNRS, UNIC (Bat-33), Alain Destexhe For further information, please contact: http://www.neuro.duke.edu http://www.neuron.yale.edu refer to the following sites: For more information about how to get NEURON and how to install it, please Run Control window. Then click on "Init and Run" button to start the simulation... "Simulations of cortical cells" window. Reposition the windows to find the Once the menu and graphics interface has appeared, select a simulation from the back to any platform: by clicking on mosinit.hoc in windows explorer. Compile the mechanism (mod) files by using mknrndll. Then start the simulation mswin platform: quit nrngui mosinit.hoc :q Then, execute the main demo program by typing: given in the mod files. the machine you are using. Just type "nrnivmodl" to compile the mechanisms To compile the demo, NEURON and INTERVIEWS must be installed and working on unix platform: :q Use autolaunch on modeldb or: ========== HOW TO RUN cadecay.mod : intracellular calcium dynamics IT.mod : T-type calcium current IM.mod : slow voltage-dependent potassium current (IM) HH2.mod : fast sodium spikes (Na and K currents) ========== MECHANISMS demo_IN_FS.oc : fast-spiking interneuron demo_PY_LTS.oc : bursting pyramidal neuron (LTS cell) demo_PY_RS.oc : regular-spiking pyramidal neuron ======== and their role in generating spike-and-wave oscillations and their role in generating spike-and-wave oscillationsLTS cells in cerebral cortex lls in cerebral cortex (see electronic copy at http://cns.iaf.cnrs-gif.fr) Neurocomputing 38: 555-563, 2001. and their role in generating spike-and-wave oscillations. Destexhe A, Contreras D and Steriade M. LTS cells in cerebral cortex thalamic relay cells. J. Neurophysiol. 79: 999-1016, 1998. synchronizing action of corticothalamic feedback through inhibition of Destexhe A, Contreras D and Steriade M. Mechanisms underlying the See also the original paper: Oxford University Press, 2001 Destexhe A and Sejnowski TJ. Thalamocortical Assemblies. kinetics of currents are given in: simulate single-compartment models of cortical neurons. Details of the The package contains mechanisms (.mod files) and programs (.oc files) needed to http://www.neuron.yale.edu Hines and available on internet at: This package is running with the NEURON simulation program written by Michael http://cns.iaf.cnrs-gif.fr Destexhe@iaf.cnrs-gif.fr 91198 Gif-sur-Yvette, France CNRS, UNIC (Bat-33), Avenue de la Terrasse, Alain Destexhe NEURON DEMO FOR SIMULATING DIFFERENT CLASSES OF CORTICAL NEURONS |