Modelling and analysis of local field potentials for studying the function of cortical circuits

Einevoll GT, Kayser C, Logothetis NK, Panzeri S (2013)
Nat Rev Neurosci 14(11): 770-85.

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Einevoll, G. T.; Kayser, ChristophUniBi ; Logothetis, N. K.; Panzeri, S.
Action Potentials Algorithms Animals Cerebral Cortex/ physiology Electroencephalography Electrophysiological Processes Evoked Potentials/ physiology Humans Models; Neurological Nerve Net/cytology/physiology Neural Pathways/ physiology Neurons/physiology Synapses/physiology
Nat Rev Neurosci
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Einevoll GT, Kayser C, Logothetis NK, Panzeri S. Modelling and analysis of local field potentials for studying the function of cortical circuits. Nat Rev Neurosci. 2013;14(11):770-85.
Einevoll, G. T., Kayser, C., Logothetis, N. K., & Panzeri, S. (2013). Modelling and analysis of local field potentials for studying the function of cortical circuits. Nat Rev Neurosci, 14(11), 770-85. doi:10.1038/nrn3599
Einevoll, G. T., Kayser, Christoph, Logothetis, N. K., and Panzeri, S. 2013. “Modelling and analysis of local field potentials for studying the function of cortical circuits”. Nat Rev Neurosci 14 (11): 770-85.
Einevoll, G. T., Kayser, C., Logothetis, N. K., and Panzeri, S. (2013). Modelling and analysis of local field potentials for studying the function of cortical circuits. Nat Rev Neurosci 14, 770-85.
Einevoll, G.T., et al., 2013. Modelling and analysis of local field potentials for studying the function of cortical circuits. Nat Rev Neurosci, 14(11), p 770-85.
G.T. Einevoll, et al., “Modelling and analysis of local field potentials for studying the function of cortical circuits”, Nat Rev Neurosci, vol. 14, 2013, pp. 770-85.
Einevoll, G.T., Kayser, C., Logothetis, N.K., Panzeri, S.: Modelling and analysis of local field potentials for studying the function of cortical circuits. Nat Rev Neurosci. 14, 770-85 (2013).
Einevoll, G. T., Kayser, Christoph, Logothetis, N. K., and Panzeri, S. “Modelling and analysis of local field potentials for studying the function of cortical circuits”. Nat Rev Neurosci 14.11 (2013): 770-85.

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