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Pharmaceuticals (Basel, Switzerland)|June 2, 2021
Neuropeptide S Receptor Stimulation Excites Principal Neurons in Murine Basolateral Amygdala through a Calcium-Dependent Decrease in Membrane Potassium ConductanceSion Park, Pia Flüthmann, Carla Wolany, et al.Chemmedchem|October 12, 2020
Co-staining of K<sub>Ca</sub> 3.1 Channels in NSCLC Cells with a Small-Molecule Fluorescent Probe and Antibody-Based Indirect ImmunofluorescenceKathrin Brömmel, Sarah Maskri, Etmar Bulk, et al.Cerebral Cortex Communications|July 23, 2021
Retrosplenial Cortex Contributes to Network Changes during Seizures in the GAERS Absence Epilepsy Rat ModelLydia Wachsmuth, Maia Datunashvili, Katharina Kemper, et al.The Journal of Physiology|July 18, 2017
Acetylcholine-dependent upregulation of TASK-1 channels in thalamic interneurons by a smooth muscle-like signalling pathwayMichael Leist, Susanne Rinné, Maia Datunashvili, et al.Plos One|December 14, 2011
Modulation of calcium-dependent inactivation of L-type Ca2+ channels via β-adrenergic signaling in thalamocortical relay neuronsVladan Rankovic, Peter Landgraf, Tatyana Kanyshkova, et al.Molecular and Cellular Neurosciences|June 11, 2014
Regionally specific expression of high-voltage-activated calcium channels in thalamic nuclei of epileptic and non-epileptic ratsTatyana Kanyshkova, Petra Ehling, Manuela Cerina, et al.Herz|October 22, 2003
[Noninvasive plaque imaging using contrast-enhanced cardiac computed tomography]Gert Kerkhoff, Axel Schmermund, Stephan Möhlenkamp, et al.Pflugers Archiv : European Journal of Physiology|May 15, 2008
Reciprocal modulation of I (h) and I (TASK) in thalamocortical relay neurons by halothaneThomas Budde, Philippe Coulon, Matthias Pawlowski, et al.Molecular and Cellular Neurosciences|August 21, 2007
Specific expression of low-voltage-activated calcium channel isoforms and splice variants in thalamic local circuit interneuronsTilman Broicher, Tatyana Kanyshkova, Peter Landgraf, et al.Neuropharmacology|August 7, 2007
T-current related effects of antiepileptic drugs and a Ca2+ channel antagonist on thalamic relay and local circuit interneurons in a rat model of absence epilepsyTilman Broicher, Thomas Seidenbecher, Patrick Meuth, et al.Pageof 20