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Journal of Neurophysiology|June 1, 1996
Distribution and functional properties of glutamate receptors in the leech central nervous systemP W Dierkes, P Hochstrate, W R SchlueBrain Research|January 23, 1997
Voltage-dependent Ca2+ influx into identified leech neuronesP W Dierkes, P Hochstrate, W R SchlueThe Journal of Membrane Biology|November 1, 2001
Modulation of Ca2+ influx in leech Retzius neurons II. Effect of extracellular Ca2+P Hochstrate, P W Dierkes, W Kilb, et al.The Journal of Membrane Biology|November 1, 2001
Modulation of Ca2+ influx in leech Retzius neurons. I. Effect of extracellular pHP Hochstrate, P W Dierkes, W Kilb, et al.Brain Research|February 15, 2001
The ouabain-induced [Ca2+]i increase in leech Retzius neurones is mediated by voltage-dependent Ca2+ channelsP Hochstrate, W R SchlueGlia|September 1, 1995
Ca2+ influx into leech neuropile glial cells mediated by nicotinic acetylcholine receptorsP Hochstrate, W R SchlueGlia|December 1, 1994
Ca2+ influx into leech glial cells and neurones caused by pharmacologically distinct glutamate receptorsP Hochstrate, W R SchlueCell Calcium|February 4, 1998
Caffeine mediates cation influx and intracellular Ca2+ release in leech P neuronesJ Schoppe, P Hochstrate, W R SchlueBrain Research|October 23, 1995
Effect of extracellular K+ on the intracellular free Ca2+ concentration in leech glial cells and Retzius neuronesP Hochstrate, C Piel, W R SchlueComparative Biochemistry and Physiology. Toxicology & Pharmacology : CBP|March 15, 2001
Activation and desensitization of the caffeine-sensitive cation channels and calcium stores have no persistent effect on the electrophysiological properties of leech P neuronesB Sieks, P Hochstrate, W R SchluePageof 8