Hyperpolarization of membrane potential reveals prominent spikelets at

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Action Potentials – Human Physiology

Theta oscillations coincide with sustained hyperpolarization in CA3 pyramidal cells, underlying decreased firing

Dendritic Na+ spikes enable cortical input to drive action potential output from hippocampal CA2 pyramidal neurons

The hyperpolarization-activated current shifts the dynamic range of a voltage-dependent electrical synapse

Theta oscillations coincide with sustained hyperpolarization in CA3 pyramidal cells, underlying decreased firing

Biology, Free Full-Text

Chapter 3b - Properties of Excitable Membranes: Spikes

The relationship between axial current loss (dendritic load) and

Chapter 3b - Properties of Excitable Membranes: Spikes

Journal of Comparative Neurology, Systems Neuroscience Journal

Hyperpolarization (biology) - Wikipedia