Articles dans des revues avec comité de lecture (65)

  1. 1. Walle, R., Petitbon, A., Fois, G. G., Varin, C., Montalban, E., Hardt, L., Contini, A., Angelo, M. F., Potier, M., Ortole, R., Oummadi, A., De Smedt-Peyrusse, V., Adan, R. R., Giros, B. B., Chaouloff, F., Ferreira, G., de Kerchove d'Exaerde, A., Ducrocq, F., Georges, F., & Trifilieff, P. P. (2024). Nucleus accumbens D1- and D2-expressing neurons control the balance between feeding and activity-mediated energy expenditure. Nature communications, 15(1), 2543. doi:10.1038/s41467-024-46874-9
  2. 2. Bonnavion, P., Varin, C., Fakhfouri, G., Martinez Olondo, M. D. P., De Groote, A., Cornil, A., Lorenzo Lopez, J. R., Pozuelo Fernandez, E., Isingrini, E., Rainer, Q., Xu, K., Tzavara, E. T., Vigneault, E., Dumas, S., de Kerchove d'Exaerde, A., & Giros, B. B. (2024). Striatal projection neurons coexpressing dopamine D1 and D2 receptors modulate the motor function of D1- and D2-SPNs. Nature neuroscience. doi:10.1038/s41593-024-01694-4
  3. 3. Cheron, J., Beccari, L., Hague, P., Icick, R., Despontin, C., Carusone, T., Defrance, M., Bhogaraju, S., Martin-Garcia, E., Capellan, R., Maldonado, R., Vorspan, F., Bonnefont, J., & de Kerchove d'Exaerde, A. (2023). USP7/Maged1-mediated H2A monoubiquitination in the paraventricular thalamus: an epigenetic mechanism involved in cocaine use disorder. Nature communications, 14(1). doi:10.1038/s41467-023-44120-2
  4. 4. Varin, C., Cornil, A., Houtteman, D., Bonnavion, P., & de Kerchove d'Exaerde, A. (2023). The respective activation and silencing of striatal direct and indirect pathway neurons support behavior encoding. Nature communications, 14(1), 4982. doi:10.1038/s41467-023-40677-0
  5. 5. Le Merrer, J., Detraux, B., Gandía, J., De Groote, A., Fonteneau, M., de Kerchove d'Exaerde, A., & Becker, J. A. J. (2023). Balance Between Projecting Neuronal Populations of the Nucleus Accumbens Controls Social Behavior in Mice. Biological psychiatry, 95, 123-135. doi:10.1016/j.biopsych.2023.05.008
  6. 6. Nishioka, T., Attachaipanich, S., Hamaguchi, K., Lazarus, M., de Kerchove d'Exaerde, A., Macpherson, T., & Hikida, T. (2023). Error-related signaling in nucleus accumbens D2 receptor-expressing neurons guides inhibition-based choice behavior in mice. Nature communications, 14(1), 2284. doi:10.1038/s41467-023-38025-3
  7. 7. Martin, M., Vermeiren, S., Bostaille, N., Eubelen, M., Spitzer, D., Vermeersch, M., Profaci, C. C., Pozuelo Fernandez, E., Toussay, X., Raman-Nair, J., Tebabi, P., America, M., De Groote, A., Sanderson, L., Cabochette, P., Freitas Vale Germano, R., Torres, D., Boutry, S., de Kerchove d'Exaerde, A., Bellefroid, E., Phoenix, T. N., Devraj, K., Lacoste, B., Daneman, R., Liebner, S., & Vanhollebeke, B. (2022). Engineered Wnt ligands enable blood-brain barrier repair in neurological disorders. Science, 375(6582):eabm4459.
  8. 8. Cheron, J., & de Kerchove d'Exaerde, A. (2021). Drug addiction: from bench to bedside. Translational Psychiatry, 11(1), 424. doi:10.1038/s41398-021-01542-0
  9. 9. Pommer, S., Akamine, Y., Schiffmann, S. N., de Kerchove d'Exaerde, A., & Wickens, J. R. (2021). The effect of serotonin receptor 5-HT1B on lateral inhibition between spiny projection neurons in the mouse striatum. The Journal of neuroscience. doi:10.1523/JNEUROSCI.1037-20.2021
  10. 10. De Groote, A., & de Kerchove d'Exaerde, A. (2021). Thalamo-Nucleus Accumbens Projections in Motivated Behaviors and Addiction. Frontiers in Systems Neuroscience, 15, 711350. doi:10.3389/fnsys.2021.711350
  11. 11. Detraux, B., Vilella, A., De Groote, A., Schiffmann, S. N., Zoli, M., & de Kerchove d'Exaerde, A. (2021). Dorsal and ventral striatal neuronal subpopulations differentially disrupt male mouse copulatory behavior. European neuropsychopharmacology, 49, 23-37. doi:10.1016/j.euroneuro.2021.03.007
  12. 12. Rial, D., Puighermanal, E., Chazalon, M., Valjent, E., Schiffmann, S. N., & de Kerchove d'Exaerde, A. (2020). Mammalian Target of Rapamycin-RhoA Signaling Impairments in Direct Striatal Projection Neurons Induce Altered Behaviors and Striatal Physiology in Mice. Biological psychiatry, 15, 10.1016/j.biopsych.2020.05.029, 945-954. doi:10.1016/j.biopsych.2020.05.029

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