Seutin, Vincent ; Université de Liège - ULiège > Département des sciences biomédicales et précliniques > Pharmacologie
Jehasse, Kevin ; Université de Liège - ULiège > Département d'électricité, électronique et informatique (Institut Montefiore) > Systèmes et modélisation
Drion, Guillaume ; Université de Liège - ULiège > Département d'électricité, électronique et informatique (Institut Montefiore) > Systèmes et modélisation
Bean, B. P. (2024). Mechanisms of pacemaking in mammalian neurons. The Journal of Physiology. Advance online publication. https://doi.org/10.1113/JP284759
Drion, G., O'Leary, T., & Marder, E. (2015) Ion channel degeneracy enables robust and tunable neuronal firing rates. Proceedings of the National Academy of Sciences, 112(38), E5361-70.
Jackson, A. C., & Bean, B. P. (2004) Mechanism of spontaneous firing in dorsomedial suprachiasmatic nucleus neurons. Journal of Neuroscience, 24 (37), 10905–917.
Jehasse, K., Massotte, L., Hartmann, S., Vitello, R., Ringlet, S., Vitello, M., Chua, H. C., Pless, S. A., Engel, D., Liégeois, J.-F., Lakaye, B., Roeper, J., & Seutin, V. (2021). The gating pore blocker 1-(2,4-xylyl)guanidinium selectively inhibits pacemaking of midbrain dopaminergic neurons. Neuropharmacology, 197, 108722.
Khaliq, Z. M., & Bean, B. P. (2008). Dynamic, nonlinear feedback regulation of slow pacemaking by A-type potassium current in ventral tegmental area neurons. Journal of Neuroscience, 28(43), 10905–917.
Sokolov, S., Scheuer, T., & Catterall, W. A. (2007). Gating pore current in an inherited ion channelopathy. Nature, 446(7131), 76–78.
Sokolov, S., Scheuer, T., & Catterall, W. A. (2010). Ion permeation and block of the gating pore in the voltage sensor of NaV1.4 channels with hypokalemic periodic paralysis mutations. Journal of General Physiology, 136(2), 225–236.
Taddese, A., & Bean, B. P. (2002) Subthreshold sodium current from rapidly inactivating sodium channels drives spontaneous firing of tuberomammillary neurons. Neuron, 33(4), 587–600.