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The Journal of Physiology|August 2, 2008
Impact of the leaner P/Q-type Ca2+ channel mutation on excitatory synaptic transmission in cerebellar Purkinje cellsShaolin Liu, David D FrielPerspectives in Biology and Medicine|November 29, 2021
Teaching Diagnostic Reasoning to Medical Students: a four-step approachDavid D Friel, Krishan ChandarThe European Journal of Neuroscience|December 21, 2007
The leaner P/Q-type calcium channel mutation renders cerebellar Purkinje neurons hyper-excitable and eliminates Ca2+-Na+ spike burstsSaak V Ovsepian, David D FrielBiophysical Journal|January 18, 2006
The amplitude distribution of release events through a fusion poreStephen W Jones, David D FrielAdvances in Experimental Medicine and Biology|March 29, 2012
Combined computational and experimental approaches to understanding the Ca(2+) regulatory network in neuronsElena E Saftenku, David D FrielCerebellum (London, England)|September 17, 2010
Enhanced synaptic inhibition disrupts the efferent code of cerebellar Purkinje neurons in leaner Cav2.1 Ca 2+ channel mutant miceSaak V Ovsepian, David D FrielTrends in Neurosciences|December 7, 2007
Calcium dynamics: analyzing the Ca2+ regulatory network in intact cellsDavid D Friel, Hillel J ChielThe Journal of General Physiology|December 28, 2006
Depolarization-induced calcium responses in sympathetic neurons: relative contributions from Ca2+ entry, extrusion, ER/mitochondrial Ca2+ uptake and release, and Ca2+ bufferingMichael Patterson, James Sneyd, David D FrielThe Journal of General Physiology|February 28, 2002
Differential regulation of ER Ca2+ uptake and release rates accounts for multiple modes of Ca2+-induced Ca2+ releaseMeredith A Albrecht, Stephen L Colegrove, David D FrielPageof 1