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Rizzi, G. und Tan, K. R. (2019) „Synergistic Nigral Output Pathways Shape Movement“, Cell reports, 27(7), S. 2184–2198.e4. 10.1016/j.celrep.2019.04.068.   edoc
Rizzi, G., Coban, M. und Tan, K. R. (2019) „Excitatory rubral cells encode the acquisition of novel complex motor tasks“, Nature communications, 10(1), S. 2241. 10.1038/s41467-019-10223-y.   edoc
Kojima, R., Bojar, D., Rizzi, G., Hamri, G. C.-E., El-Baba, M. D., Saxena, P., Ausländer, S., Tan, K. R. und Fussenegger, M. (2018) „Designer exosomes produced by implanted cells intracerebrally deliver therapeutic cargo for Parkinson’s disease treatment“, Nature communications, 9(1), S. 1305. 10.1038/s41467-018-03733-8.   edoc
Rizzi, G. und Tan , K. R. (2017) „Dopamine and Acetylcholine, a Circuit Point of View in Parkinson’s Disease“, Frontiers in Neural Circuits, 11(110), S. 1–14. 10.3389/fncir.2017.00110.   edoc | Open Access
Rizzi, G., Lodge, M. E. und Tan, K. R. (2016) „Design and construction of a low-cost nose poke system for rodents“, MethodsX, 3, S. 326–632. 10.1016/j.mex.2016.04.002.   edoc
Lalive, A. L., Munoz, M. B., Bellone, C., Slesinger, P. A., Lüscher, C. und Tan, K. R. (2014) „Firing modes of dopamine neurons drive bidirectional GIRK channel plasticity“, Journal of Neuroscience, 34(15), S. 5107–5114. 10.1523/JNEUROSCI.5203-13.2014.   edoc
Creed, M. C., Ntamati, N. R. und Tan, K. R. (2014) „VTA GABA neurons modulate specific learning behaviors through the control of dopamine and cholinergic systems“, Frontiers in Behavioral Neuroscience, 8, S. 8. 10.3389/fnbeh.2014.00008.   edoc
Bocklisch, C., Pascoli, V., Wong, J. C. Y., House, D. R. C., Yvon, C., de Roo, M., Tan, K. R. und Lüscher, C. (2013) „Cocaine disinhibits dopamine neurons by potentiation of GABA transmission in the ventral tegmental area“, Science, 341(6153), S. 1521–1525. 10.1126/science.1237059.   edoc
Padgett, C. L., Lalive, A. L., Tan, K. R., Terunuma, M., Munoz, M. B., Pangalos, M. N., Martínez-Hernández, J., Watanabe, M., Moss, S. J., Luján, R., Lüscher, C. und Slesinger, P. A. (2012) „Methamphetamine-evoked depression of GABA(B) receptor signaling in GABA neurons of the VTA“, Neuron, 73(5), S. 978–989. 10.1016/j.neuron.2011.12.031.   edoc
Tan, K. R., Yvon, C., Turiault, M., Mirzabekov, J. J., Doehner, J., Labouèbe, G., Deisseroth, K., Tye, K. M. und Lüscher, C. (2012) „GABA neurons of the VTA drive conditioned place aversion“, Neuron, 73(6), S. 1173–1183. 10.1016/j.neuron.2012.02.015.   edoc
Brown, M. T. C., Tan, K. R., O’Connor, E. C., Nikonenko, I., Muller, D. und Lüscher, C. (2012) „Ventral tegmental area GABA projections pause accumbal cholinergic interneurons to enhance associative learning“, Nature, 492(7429), S. 452–456. 10.1038/nature11657.   edoc
Lalive, A. L., Rudolph, U., Lüscher, C. und Tan, K. R. (2011) „Is there a way to curb benzodiazepine addiction?“, Swiss Medical Weekly. EMH Schweizerischer Arzteverlag , S. w13277. 10.4414/smw.2011.13277.   edoc
Tan, K. R., Rudolph, U. und Lüscher, C. (2011) „Hooked on benzodiazepines: GABAA receptor subtypes and addiction“, Trends in Neurosciences, 34(4), S. 188–197. 10.1016/j.tins.2011.01.004.   edoc
Tan, K. R., Brown, M., Labouèbe, G., Yvon, C., Creton, C., Fritschy, J.-M., Rudolph, U. und Lüscher, C. (2010) „Neural bases for addictive properties of benzodiazepines“, Nature, 463(7282), S. 769–774. 10.1038/nature08758.   edoc
Tan, K. R., Baur, R., Charon, S., Goeldner, M. und Sigel, E. (2009) „Relative positioning of diazepam in the benzodiazepine-binding-pocket of GABA receptors“, Journal of Neurochemistry, 111(5), S. 1264–1273. 10.1111/j.1471-4159.2009.06419.x.   edoc
Baur, R., Tan, K. R., Lüscher, B. P., Gonthier, A., Goeldner, M. und Sigel, E. (2008) „Covalent modification of GABAA receptor isoforms by a diazepam analogue provides evidence for a novel benzodiazepine binding site that prevents modulation by these drugs“, Journal of Neurochemistry, 106(6), S. 2353–2363. 10.1111/j.1471-4159.2008.05574.x.   edoc
Tan, K. R., Baur, R., Gonthier, A., Goeldner, M. und Sigel, E. (2007) „Two neighboring residues of loop A of the alpha1 subunit point towards the benzodiazepine binding site of GABAA receptors“, FEBS Letters, 581(24), S. 4718–4722. 10.1016/j.febslet.2007.08.068.   edoc
Tan, K. R., Gonthier, A., Baur, R., Ernst, M., Goeldner, M. und Sigel, E. (2007) „Proximity-accelerated chemical coupling reaction in the benzodiazepine-binding site of gamma-aminobutyric acid type A receptors: superposition of different allosteric modulators“, Journal of Biological Chemistry, 282(36), S. 26316–26325. 10.1074/jbc.M702153200.   edoc
Laffray, S., Tan, K., Dulluc, J., Bouali-Benazzouz, R., Calver, A. R., Nagy, F. und Landry, M. (2007) „Dissociation and trafficking of rat GABAB receptor heterodimer upon chronic capsaicin stimulation“, European Journal of Neuroscience, 25(5), S. 1402–1416. 10.1111/j.1460-9568.2007.05398.x.   edoc
Tan, K., Guibert, C., Neaud, V. und Rosenbaum, J. (2003) „Hepatitis C virus proteins do not directly trigger fibrogenic events in cultured human liver myofibroblasts“, Journal of Viral Hepatitis, 10(6), S. 427–432. 10.1046/j.1365-2893.2003.00460.x.   edoc