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Molecular Pharmacology|August 15, 2001
Ca(v)3.2 channel is a molecular substrate for inhibition of T-type calcium currents in rat sensory neurons by nitrous oxideS M Todorovic, V Jevtovic-Todorovic, S Mennerick, et al.British Journal of Pharmacology|January 13, 2005
Contrasting anesthetic sensitivities of T-type Ca2+ channels of reticular thalamic neurons and recombinant Ca(v)3.3 channelsPavle M Joksovic, Barbara C Brimelow, Janet Murbartián, et al.The Journal of Neuroscience : the Official Journal of the Society for Neuroscience|February 6, 2009
Isoflurane-sensitive presynaptic R-type calcium channels contribute to inhibitory synaptic transmission in the rat thalamusPavle M Joksovic, Marco Weiergräber, WooYong Lee, et al.Experimental Biology and Medicine (Maywood, N.J.)|June 2, 2025
In vivo silencing of the thalamic CaV3.1 voltage-gated calcium channels demonstrates their region-specific role in anesthetic mediated hypnosisTamara Timic Stamenic, Simon Feseha, Brier Fine-Raquet, et al.Molecular Neurobiology|September 8, 2019
The Role of Free Oxygen Radicals in Lasting Hyperexcitability of Rat Subicular Neurons After Exposure to General Anesthesia During Brain DevelopmentSrdjan M Joksimovic, Michael R DiGruccio, Annalisa Boscolo, et al.Physics in Medicine and Biology|February 1, 2007
Dosimetric evaluation of a 2D pixel ionization chamber for implementation in clinical routineJ Herzen, M Todorovic, F Cremers, et al.Cerebral Cortex (New York, N.Y. : 1991)|February 5, 2019
Alterations in Oscillatory Behavior of Central Medial Thalamic Neurons Demonstrate a Key Role of CaV3.1 Isoform of T-Channels During Isoflurane-Induced AnesthesiaTamara Timic Stamenic, Simon Feseha, Robert Valdez, et al.Neuropharmacology|April 12, 2012
Inhibition of T-type calcium current in rat thalamocortical neurons by isofluraneVeit-Simon Eckle, Michael R Digruccio, Victor N Uebele, et al.The Journal of General Physiology|February 29, 2012
Molecular and biophysical basis of glutamate and trace metal modulation of voltage-gated Ca(v)2.3 calcium channelsAleksandr Shcheglovitov, Iuliia Vitko, Roman M Lazarenko, et al.Experimental Biology and Medicine (Maywood, N.J.)|June 25, 2025
Comparative electrophysiological study of neuroactive steroid-induced hypnosis in mice: sex and drug-specific differencesAbigail Martin, Ian Coulter, Reginald Cox, et al.Pageof 16