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The Journal of Physiology|June 1, 2004
Isoflurane depresses glutamate release by reducing neuronal excitability at the Drosophila neuromuscular junctionDavid J SandstromAnesthesiology|February 23, 2008
Isoflurane reduces excitability of Drosophila larval motoneurons by activating a hyperpolarizing leak conductanceDavid J SandstromJournal of Neurogenetics|September 1, 2011
Extracellular protons reduce quantal content and prolong synaptic currents at the Drosophila larval neuromuscular junctionDavid J SandstromCurrent Biology : CB|March 19, 2004
Drug targets: turning the channel (on) for sedationDavid J Sandstrom, Howard NashThe Journal of Experimental Biology|April 1, 2022
Measurement of oxygen consumption in Tenebrio molitor using a sensitive, inexpensive, sensor-based coulometric microrespirometerDavid J Sandstrom, Bruce W OffordMolecular and Cellular Neurosciences|September 8, 2012
Drosophila neuroligin 1 regulates synaptic growth and function in response to activity and phosphoinositide-3-kinaseBrian A Mozer, David J SandstromJournal of Visualized Experiments : Jove|July 24, 2023
Measuring O2 Consumption in Drosophila Melanogaster using Coulometric MicrorespirometrySophia R Ford, Jose Ildefonso Flores, David J SandstromNature|April 27, 2002
AP-1 functions upstream of CREB to control synaptic plasticity in DrosophilaSubhabrata Sanyal, David J Sandstrom, Charles A Hoeffer, et al.Molecular and Cellular Neurosciences|December 28, 2010
NFAT regulates pre-synaptic development and activity-dependent plasticity in DrosophilaAmanda Freeman, Amy Franciscovich, Mallory Bowers, et al.Anesthesiology|December 21, 2012
Drosophila ryanodine receptors mediate general anesthesia by halothaneShuying Gao, David J Sandstrom, Harold E Smith, et al.Pageof 2