The large-conductance calcium-activated potassium (BK) channel is a critical regulator of neuronal action potential firing and follows two distinct trends in early postnatal development: an increase in total expression and a shift from the faster activating STREX isoform to the slower ZERO isoform. We analyzed the functional consequences of developmental trends in BK channel expression in hippocampal neurons isolated from neonatal rats aged 1 to 7 days. Following overnight cultures, action potentials and currents were recorded using whole cell patch-clamp electrophysiology. These neurons undergo a steady increase in excitability during this time, and the effect of blockade of BK channel activity with 100 nM iberiotoxin changes as the neuron...
Calcium transients play an important role in the early and later phases of differentiation and matur...
Activation of large conductance Ca 2+ -activated potassium (BK) channels hastens action potential re...
The rapidly inactivating A-type K+ current (IA) is prominent in hippocampal neurons; and the speed o...
The large-conductance calcium-activated potassium (BK) channel is a critical regulator of neuronal a...
I. Postnatal development of a large conductance Ca2+-activated K+ channel (BK channel) was investiga...
CA1 pyramidal neurons undergo intense morphological and electrophysiological changes from the second...
Voltage-gated potassium (K) channels are important in controlling a neuron's excitability. In this t...
I. The properties of large conductance Ca*+-activated K+ chan-nels (BK channels) were investigated i...
This dissertation outlines the postnatal development of excitability as well as expression and funct...
4siEarly electrical activity and calcium influx regulate crucial aspects of neuronal development. S...
Modifications of synaptic efficacy play a crucial role in information processing in the brain. In pa...
During the early postnatal period, GABAB receptor activation facilitates L-type calcium current in r...
Large‐conductance voltage‐ and calcium‐activated potassium (BK) channels are large‐conductance calci...
The medial prefrontal cortex (PFC) is involved in cognitive functions, which undergo profound change...
Hypoxia is a major cause of neonatal encephalopathy and seizures, and an increased neuronal excitabi...
Calcium transients play an important role in the early and later phases of differentiation and matur...
Activation of large conductance Ca 2+ -activated potassium (BK) channels hastens action potential re...
The rapidly inactivating A-type K+ current (IA) is prominent in hippocampal neurons; and the speed o...
The large-conductance calcium-activated potassium (BK) channel is a critical regulator of neuronal a...
I. Postnatal development of a large conductance Ca2+-activated K+ channel (BK channel) was investiga...
CA1 pyramidal neurons undergo intense morphological and electrophysiological changes from the second...
Voltage-gated potassium (K) channels are important in controlling a neuron's excitability. In this t...
I. The properties of large conductance Ca*+-activated K+ chan-nels (BK channels) were investigated i...
This dissertation outlines the postnatal development of excitability as well as expression and funct...
4siEarly electrical activity and calcium influx regulate crucial aspects of neuronal development. S...
Modifications of synaptic efficacy play a crucial role in information processing in the brain. In pa...
During the early postnatal period, GABAB receptor activation facilitates L-type calcium current in r...
Large‐conductance voltage‐ and calcium‐activated potassium (BK) channels are large‐conductance calci...
The medial prefrontal cortex (PFC) is involved in cognitive functions, which undergo profound change...
Hypoxia is a major cause of neonatal encephalopathy and seizures, and an increased neuronal excitabi...
Calcium transients play an important role in the early and later phases of differentiation and matur...
Activation of large conductance Ca 2+ -activated potassium (BK) channels hastens action potential re...
The rapidly inactivating A-type K+ current (IA) is prominent in hippocampal neurons; and the speed o...