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American Journal of Physiology. Cell Physiology|March 14, 2001
K+ channels and the microglial respiratory burstR Khanna, L Roy, X Zhu, et al.Cellular Physiology and Biochemistry : International Journal of Experimental Cellular Physiology, Biochemistry, and Pharmacology|June 19, 2001
Regulation of Kv1.3 channels in activated human T lymphocytes by Ca(2+)-dependent pathwaysM C Chang, R Khanna, L C SchlichterThe European Journal of Neuroscience|July 11, 2000
Suppression of the rat microglia Kv1.3 current by src-family tyrosine kinases and oxygen/glucose deprivationF S Cayabyab, R Khanna, O T Jones, et al.The Journal of Biological Chemistry|August 10, 2001
Calmodulin regulates assembly and trafficking of SK4/IK1 Ca2+-activated K+ channelsW J Joiner, R Khanna, L C Schlichter, et al.The Journal of Biological Chemistry|January 8, 2000
Internalization of the Kv1.4 potassium channel is suppressed by clustering interactions with PSD-95D G Jugloff, R Khanna, L C Schlichter, et al.The Journal of Biological Chemistry|May 18, 1999
hSK4/hIK1, a calmodulin-binding KCa channel in human T lymphocytes. Roles in proliferation and volume regulationR Khanna, M C Chang, W J Joiner, et al.Developmental Biology|July 1, 1989
Ionic currents underlying the action potential of Rana pipiens oocytesL C SchlichterCanadian Journal of Physiology and Pharmacology|March 1, 1992
Acute exposure to human interferon-alpha affects ion currents in human natural killer cellsL C SchlichterDevelopmental Biology|July 1, 1983
Spontaneous action potentials produced by Na and Cl channels in maturing Rana pipiens oocytesL C SchlichterDevelopmental Biology|July 1, 1983
A role for action potentials in maturing Rana pipiens oocytesL C SchlichterPageof 383