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Journal Article
Clinical and Experimental Pharmacology and Physiology, ISSN 0305-1870, 01/2002, Volume 29, Issue 1, pp. 18 - 25
SUMMARY1. The tissue distribution of small conductance Ca2+-activated K+ channels (SK2 and SK3) was examined in three preparations of the guinea-pig intestine:... 
electron and confocal microscopy | intestinal inhibitory neurotransmission | gastrointestinal tract | channels | interstitial cells of Cajal | activated K | Ca2+‐activated K+ channels | Electron and confocal microscopy | Intestinal inhibitory neurotransmission | Gastrointestinal tract | Interstitial cells of Cajal | PHYSIOLOGY | KIT-POSITIVE CELLS | ELECTRICAL RHYTHMICITY | GASTROINTESTINAL-TRACT | ENTERIC MOTOR-NEURONS | PROXIMAL COLON | INTERSTITIAL-CELLS | NUCLEAR-ENVELOPE | SODIUM-NITROPRUSSIDE | CIRCULAR MUSCLE | NITRIC-OXIDE | PHARMACOLOGY & PHARMACY | Ca2+-activated K+ channels | Stomach - chemistry | Guinea Pigs | Humans | Intestines - chemistry | Colon - chemistry | Potassium Channels, Calcium-Activated - analysis | Rats | Male | Neuropeptides - metabolism | Muscle, Smooth - ultrastructure | Muscle, Smooth - chemistry | Potassium Channels, Calcium-Activated - ultrastructure | Intestines - ultrastructure | Potassium Channels - metabolism | Animals | Female | Potassium Channels - ultrastructure | Small-Conductance Calcium-Activated Potassium Channels | Stomach - ultrastructure | Colon - ultrastructure | Comparative Study | Colon, ultrastructure | Intestines, ultrastructure | Potassium Channels, ultrastructure | Stomach, ultrastructure | Potassium Channels, Calcium-Activated, ultrastructure | Neuropeptides, metabolism | Potassium Channels, metabolism | Colon, chemistry | Muscle, Smooth, chemistry | Stomach, chemistry | Muscle, Smooth, ultrastructure | Intestines, chemistry | Potassium Channels, Calcium-Activated, analysis
Journal Article
Journal Article
Journal Article
Biological Psychiatry, ISSN 0006-3223, 2011, Volume 69, Issue 7, pp. 625 - 632
Background Small conductance calcium-activated potassium type 2 channels (SK2) control excitability and contribute to plasticity by reducing excitatory... 
Psychiatry | 1-EBIO | glutamatergic synapses | withdrawal hyperexcitability | SK2 | alcoholism | adaptive plasticity | NMDA RECEPTORS | PSYCHIATRY | CA2+-ACTIVATED K+ CHANNELS | D-ASPARTATE RECEPTORS | HIPPOCAMPAL PYRAMIDAL NEURONS | NEUROSCIENCES | NUCLEUS-ACCUMBENS | DENDRITIC SPINES | EXCITATORY SYNAPTIC-TRANSMISSION | MEDIAL PREFRONTAL CORTEX | SK CHANNELS | INTERMITTENT ETHANOL EXPOSURE | Small-Conductance Calcium-Activated Potassium Channels - physiology | Central Nervous System Depressants - adverse effects | Propidium - metabolism | Receptors, N-Methyl-D-Aspartate - metabolism | Neuronal Plasticity - drug effects | Male | Neurons - cytology | Hippocampus - drug effects | Excitatory Postsynaptic Potentials - drug effects | Patch-Clamp Techniques - methods | Substance Withdrawal Syndrome - pathology | Central Nervous System Depressants - pharmacology | Dose-Response Relationship, Drug | Excitatory Postsynaptic Potentials - physiology | Drug Interactions | Neuronal Plasticity - physiology | Synapses - metabolism | Time Factors | Ethanol - adverse effects | Neurons - physiology | Neurons - drug effects | Organ Culture Techniques | Benzimidazoles - therapeutic use | Disease Models, Animal | Animals, Newborn | Synapses - drug effects | Calcium - pharmacology | Glutamic Acid - pharmacology | Rats | Hippocampus - cytology | Rats, Sprague-Dawley | Gene Expression Regulation - drug effects | Ethanol - pharmacology | Animals | Analysis of Variance | Calcium Channel Agonists - therapeutic use | Glutamic Acid - metabolism | Mice | Substance Withdrawal Syndrome - physiopathology | Index Medicus
Journal Article
Journal Article
Journal Article