يعرض 1 - 10 نتائج من 19 نتيجة بحث عن '"Jon Storm-Mathisen"', وقت الاستعلام: 0.74s تنقيح النتائج
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    المصدر: Neuroscience. 163:965-976

    مصطلحات موضوعية: patch-clamp techniques, perforant pathway, hippocampus, Columbia university, membrane potentials, crystallography (X-Ray), retention (psychology), neural conduction, humans, electric stimulation, sodium, learning, discrimination learning, embryonic stem cells, neural pathways, crustacea, synaptic potentials, histocompatibility antigens class I, cytoskeletal proteins, excitatory postsynaptic potentials, animals, neurogenesis, receptors (AMPA), symporters, fear, Neuroscience(all), Gouaux E, adult stem cells, receptors (neurotransmitter), Avoidance learning, transcription factors, motor neurons, Tonegawa S, amino acid transport systems (acidic), motor activity, astrocytes, amino acid transport systems, Space perception, neurotransmitter transport proteins, neurotransmitter agents, Spatial behavior, aspartic acid, psychomotor performance, Bliss TV, synapses, excitatory amino acid antagonists, Neuroscience, conditioning (classical), binding sites, neurons, Tribute, memory, biological transport, protein subunits, biophysics, spatial behavior, neuronal plasticity, dentate gyrus, mice (knockout), protein structure (tertiary), General Neuroscience, glutamate plasma membrane transport proteins, receptors (N-Methyl-D-Aspartate), models (neurological), Gage FH, nerve net, space perception, mice (transgenic), avoidance learning, immunohistochemistry, microscopy (immunoelectron), ganglia (invertebrate), Christian ministry, glutamic acid, leucine, Psychology, biological markers, microscopy (confocal), tetanus toxin, Grillner S, analysis of variance, mice, cerebellum, maze learning, axons, Joint venture, calcium signaling, membrane transport proteins, glutamates, behavior (animal), protein conformation, computer simulation, Motor activity, nerve tissue proteins, Jessell TM, long-term potentiation, Marder E, amino acids, ligands, Shatz CJ, aging, Seeburg PH, dendritic spines, central nervous system, electrophysiology, Rakic P, kinetics, gene expression, green fluorescent proteins, protein kinase C

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