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Afterhyperpolarization
Membrane Properties Underlying the Firing of Neurons in the Avian Cochlear Nucleus
ELECTROPHYSIOLOGY of the NEURON an Interactive Tutorial
Ca2+-Activated Kca3.1 Potassium Channels Contribute to the Slow
A Neurophysiologically-Inspired Statistical Language Model
Apamin-Sensitive Small Conductance Calcium-Activated Potassium
Role of the Afterhyperpolarization in Control of Discharge Properties of Septal Cholinergic Neurons in Vitro
Physiological Role of Calcium-Activated Potassium Currents in the Rat Lateral Amygdala
The Action Potential in Mammalian Central Neurons
IK1 Channels Do Not Contribute to the Slow Afterhyperpolarization In
AHP, BK- and SK-Channel References
Reduction of an Afterhyperpolarization Current Increases Excitability in Striatal Cholinergic Interneurons in Rat Parkinsonism
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