Nevian, Thomas

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2015

Santello, Mirko; Nevian, Thomas (2015). Dysfunction of Cortical Dendritic Integration in Neuropathic Pain Reversed by Serotoninergic Neuromodulation. Neuron, 86(1), pp. 233-246. Cell Press 10.1016/j.neuron.2015.03.003

2014

Blom, Sigrid Marie; Pfister, Jean Pascal; Santello, Mirko; Senn, Walter; Nevian, Thomas (2014). Nerve Injury-Induced Neuropathic Pain Causes Disinhibition of the Anterior Cingulate Cortex. Journal of neuroscience, 34(17), pp. 5754-5764. Society for Neuroscience 10.1523/JNEUROSCI.3667-13.2014

Groen, M. R.; Paulsen, O.; Pérez Garci, Enrique; Nevian, Thomas; Wortel, J.; Dekker, M. P.; Mansvelder, H. D.; van Ooyen, A.; Meredith, R. M. (2014). Development of dendritic tonic GABAergic inhibition regulates excitability and plasticity in CA1 pyramidal neurons. Journal of neurophysiology, 112(2), pp. 287-299. American Physiological Society 10.1152/jn.00066.2014

2013

Sieber, Andrea; Min, Rogier; Nevian, Thomas (2013). Non-Hebbian Long-Term Potentiation of Inhibitory Synapses in the Thalamus. Journal of neuroscience, 33(40), pp. 15675-15685. Society for Neuroscience 10.1523/JNEUROSCI.0247-13.2013

Pérez Garci, Enrique; Larkum, Matthew; Nevian, Thomas (2013). Inhibition of dendritic Ca2+ spikes by GABAB receptors in cortical pyramidal neurons is mediated by a direct Gi/o- -subunit interaction with Cav1 channels. Journal of physiology, 591(7), pp. 1599-1612. Wiley-Blackwell 10.1113/jphysiol.2012.245464

2012

Min, Rogier; Santello, Mirko; Nevian, Thomas (2012). The computational power of astrocyte mediated synaptic plasticity. Frontiers in computational neuroscience, 6(93) Frontiers Research Foundation 10.3389/fncom.2012.00093

2011

Min, Rogier; Nevian, Thomas (2011). Neocortical spike timing-dependent depression requires astrocyte mediated retrograde signaling. In: Clinical Neuroscience Meeting 2011. Bern, Switzerland. 22th November 2011.

2010

Min, Rogier; Nevian, Thomas (2010). Mechanisms underlying the induction and expression of spike-timing dependent depression at L4-L2/3 synapses in barrel cortex. In: FENS Forum 2010. Amsterdam. 3-7 July 2010.

2009

Frey, M.C.; Sprengel, R; Nevian, T (2009). Activity pattern dependent LTP in neocortex and hippocampus of GluA1 (GluR-A) subunit deficient mice. Journal of neuroscience, 29(17), pp. 5587-5596. Washington, D.C.: Society for Neuroscience 10.1523/JNEUROSCI.5314-08.2009

2008

Larkum, M E; Nevian, T (2008). Synaptic clustering by dendritic signalling mechanisms. Current opinion in neurobiology, 18(3), pp. 321-331. Oxford: Elsevier 10.1016/j.conb.2008.08.013

Nevian, T; Schiller, J; Larkum, M E (2008). Patch clamp recordings from fine dendrites of layer 5 pyramidal neurons. In: 6th Forum of European Neurosciences 2008 Geneva, 147.21, 2008.

Pérez-Garci, E; Nevian, T; Larkum, M E (2008). GABAB receptors inhibit dendritic Ca2+ spikes in L5 pyramidal neurons by inhibiting L-type Ca2+ conductances. In: 6th Forum of European Neurosciences 2008 Geneva, 114.24, 2008.

2007

Egger, Veronica; Nevian, Thomas; Bruno, Randy M (2007). Subcolumnar Dendritic and Axonal Organization of Spiny Stellate and Star Pyramid Neurons within a Barrel in Rat Somatosensory Cortex. Cerebral cortex, 18(4), -. New York, N.Y.: Oxford University Press 10.1093/cercor/bhm126

Helmchen, Fritjof; Nevian, Thomas (2007). Little strokes fill big oaks: a simple in vivo stain of brain cells. Neuron, 53(6), pp. 771-3. Cambridge, Mass.: Cell Press 10.1016/j.neuron.2007.03.001

Nevian, Thomas; Helmchen, Fritjof (2007). Calcium indicator loading of neurons using single-cell electroporation. Pflügers Archiv : European journal of physiology, 454(4), pp. 675-88. Berlin: Springer 10.1007/s00424-007-0234-2

Nevian, Thomas; Larkum, Matthew E; Polsky, Alon; Schiller, Jackie (2007). Properties of basal dendrites of layer 5 pyramidal neurons: a direct patch-clamp recording study. Nature neuroscience, 10(2), pp. 206-14. New York, N.Y.: Nature America 10.1038/nn1826

2006

Nevian, Thomas; Sakmann, Bert (2006). Spine Ca2+ signaling in spike-timing-dependent plasticity. Journal of neuroscience, 26(43), pp. 11001-13. Washington, D.C.: Society for Neuroscience 10.1523/JNEUROSCI.1749-06.2006

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