|
Hippokampális hálózati aktivitás-átmenetek in vitro: Hogyan vezet a serkentő és gátlósejtek kölcsönhatása periódikus hálózati aktivitásmintázatok kialakulásához egészséges és epileptikus rendszerben?
|
súgó
nyomtatás
|
Ezen az oldalon az NKFI Elektronikus Pályázatkezelő Rendszerében nyilvánosságra hozott projektjeit tekintheti meg.
vissza »
|
|
Közleményjegyzék |
|
|
Schlingloff, D., Káli, S., Freund, T.F., Hájos, N., Gulyás, A.I.: Mechanisms of sharp wave initiation and ripple generation, J.Neurosci 34(34): 11385–11398, 2014 | Karlocai MR, Kohus Z, Kali S, Ulbert I, Szabo G, Mate Z, Freund TF, Gulyas AI: Physiological sharp wave-ripples and interictal events in vitro: what's the difference?, BRAIN 137: (2 (Feb)) 463-485, 2014 | Gulyás, A.I. and Freund , T.F.: Generation of physiological and pathological high frequency oscillations: the role of perisomatic inhibition in sharp-wave ripple and interictal spike generation, Current Opinion in Neurobiology 31:26–32, 2014 | Hajos N, Karlocai MR, Nemeth B, Ulbert I, Monyer H, Szabo G, Erdelyi F, Freund TF, Gulyas AI: Input-Output Features of Anatomically Identified CA3 Neurons during Hippocampal Sharp Wave/Ripple Oscillation In Vitro., J NEUROSCI 33: (28) 11677-11691, 2013 | Friedrich, P., Vella M., Gulyás A.I., Freund T.F, Káli S: A Flexible, Interactive Software Tool for Fitting the Parameters of Neuronal Models, Frontiers in Neuroinformatics 8: Article 63:1-19, 2014 | Takacs VT, Szonyi A, Freund TF, Nyiri G, Gulyas AI: Quantitative ultrastructural analysis of basket and axo-axonic cell terminals in the mouse hippocampus., BRAIN STRUCT FUNC : , 2014 | Takacs V, Klausberger T, Somogyi P, Freund TF, Gulyas AI: Extrinsic and local glutamatergic inputs of the rat hippocampal CA1 area differentially innervate pyramidal cells and interneurons, HIPPOCAMPUS 22: (6) 1379-1391, 2012 | Chiovini B., Turi G.F., Katona G., Kaszás A., Pálfi D., Maák P., Szalay G., Forián Szabó M., Szabó G., Szadai Z., Káli S., Rózsa B.: Dendritic spikes induce ripples in parvalbumin interneurons during hippocampal sharp waves, Neuron 82:908-24, 2014 | Kohus Z, Hájos N, Freund TF, Ulbert I, Gulyás AI: Analysis of sharp-wave ripple generation using global and local drug application and current-source density analysis in hippocampal slices, FENS Forum, 2012, Barcelona, 2012 | Norbert Hájos, Mária R. Karlócai, Beáta Németh, István Ulbert, Hannah Monyer, Gábor Szabó, Ferenc Erdélyi, Tamás F. Freund and Attila I. Gulyás: Input-output features of anatomically-identified CA3 neurons during hippocampal sharp wave/ripple oscillation in vitro, Journal of Neuroscience (accepted with revisions), 2013 | Schlingloff D, Káli S, Kohus Z, Hájos N, Freund T F, Gulyás A I: Anatomy of sharp-wave ripples: pyramidal cells are responsible for initiation and PV interneurons for ripple generation and termination, Janelia Conference: Neuron Types in the Hippocampal Formation: Structure, Activity, and Molecular Genetics, 2012 | Kohus Z, Karlócai MR, Schlingloff D, Freund TF, Gulyás AI: Frequency and firing pattern dependent short-term plasticity of IPSCs on CA3 pyramidal cells mediated by perisomatic targeting interneurons, MITT 2013, 2013 | Szabolcs Káli, Eszter Vértes, Dávid G Nagy, Tamás F Freund, Attila I Gulyás: Mechanisms of sharp wave-ripple generation and autonomous replay in a hippocampal network model., BMC Neuroscience 14 (Suppl 1):O13, 2013 | Péter Friedrich, Attila I Gulyás, Tamás F Freund, Szabolcs Káli: A flexible software tool for fitting the parameters of neuronal models., BMC Neuroscience, 14 (Suppl 1):P202, 2013 | Karlocai MR, Kohus Z, Kali S, Ulbert I, Szabo G, Mate Z, Freund TF, Gulyas AI: Physiological sharp wave-ripples and interictal events in vitro: what's the difference?, BRAIN : , 2014 | Takacs VT, Szonyi A, Freund TF, Nyiri G, Gulyas AI: Quantitative ultrastructural analysis of basket and axo-axonic cell terminals in the mouse hippocampus., BRAIN STRUCT FUNC : , 2014 | Hajos N, Karlocai MR, Nemeth B, Ulbert I, Monyer H, Szabo G, Erdelyi F, Freund TF, Gulyas AI: Input-Output Features of Anatomically Identified CA3 Neurons during Hippocampal Sharp Wave/Ripple Oscillation In Vitro., J NEUROSCI 33: (28) 11677-11691, 2013 | Káli S, Gulyás A: The invisible dendrite: On the use of morphological constraints in the interpretation of intracellular and field potential recordings, IBRO-MITT, 2012 | Karlócai R M, Szabó G G, Németh B, Freund T F, Gulyás A I, Hájos N: Excitatory synaptic input controls the spiking activity of neurons during sharp wave-ripple oscillations in the CA3 region of hippocampal slices, 3rd European Synapse Meeting, Balatonfüred, 2011 | Karlócai R M, Szabó G G, Németh B, Freund T F, Gulyás A I, Hájos N: Excitatory synaptic input controls the spiking activity of neurons during sharp wave-ripple oscillations in the CA3 region of hippocampal slices, Sinapsa Neuroscience Conference, Ljubljana, 2011 | S Káli and R Zemankovics: The effect of dendritic voltage-gated conductances on the neuronal impedance: a quantitative mode, Journal of Computational Neuroscience, 2011 | M R Karlócai T F Freund A I Gulyás: Sharp wave ripples and epileptiform events in vitro: What’s the difference?, IBRO-MITT Szeged, 2012 | Kohus Z, Hájos N, Freund TF, Gulyás AI: Isolation of active and passive currents contributing to sharp-wave ripple generation in the hippocampus in vitro using current-source density analysis and local drug app, IBRO-MITT Szeged, 2012 |
|
|
|
|
|
|
vissza »
|
|
|