<div><p>A major challenge is to understand maladaptive changes in ion channels that sets neurons on a course towards epilepsy development. Voltage- and calcium-activated K+ (BK) channels contribute to early spike timing in neurons, and studies indicate that the BK channel plays a pathological role in increasing excitability early after a seizure. Here, we have investigated changes in BK channels and their accessory β4 subunit (<i>KCNMB4</i>) in dentate gyrus (DG) granule neurons of the hippocampus, key neurons that regulate excitability of the hippocampus circuit. Two days after pilocarpine-induced seizures, we found that the predominant effect is a downregulation of the β4 accessory subunit mRNA. Consistent with reduced expression, single ...
Febrile seizures, in addition to being the most common seizure type of the developing human, may con...
During cognitive tasks, synchronicity of neural activity varies and is correlated with performance. ...
During cognitive tasks, synchronicity of neural activity varies and is correlated with performance. ...
<p>The large-conductance K(+) channel (BK channel) can control neural excitability, and enhanced cha...
The large-conductance K(+) channel (BK channel) can control neural excitability, and enhanced channe...
<div><p>The large-conductance K<sup>+</sup> channel (BK channel) can control neural excitability, an...
A heritable gain-of-function in BK channel activity has been associated with spontaneous seizures in...
Growing evidence suggests that K+ channel dysfunction contributes to neuronal hyperexcitability in e...
Brain metabolism can profoundly influence neuronal excitability. Mice with genetic deletion or alter...
Large‐conductance voltage‐ and calcium‐activated potassium (BK) channels are large‐conductance calci...
Large‐conductance voltage‐ and calcium‐activated potassium (BK) channels are large‐conductance calci...
In the hippocampus, BK channels are preferentially localized in presynaptic glutamatergic terminals ...
Febrile seizures, in addition to being the most common seizure type of the developing human, may con...
Febrile seizures, in addition to being the most common seizure type of the developing human, may con...
We show here that the voltage-gated K+ channel Kv12.2 is a potent regulator of excitability in hippo...
Febrile seizures, in addition to being the most common seizure type of the developing human, may con...
During cognitive tasks, synchronicity of neural activity varies and is correlated with performance. ...
During cognitive tasks, synchronicity of neural activity varies and is correlated with performance. ...
<p>The large-conductance K(+) channel (BK channel) can control neural excitability, and enhanced cha...
The large-conductance K(+) channel (BK channel) can control neural excitability, and enhanced channe...
<div><p>The large-conductance K<sup>+</sup> channel (BK channel) can control neural excitability, an...
A heritable gain-of-function in BK channel activity has been associated with spontaneous seizures in...
Growing evidence suggests that K+ channel dysfunction contributes to neuronal hyperexcitability in e...
Brain metabolism can profoundly influence neuronal excitability. Mice with genetic deletion or alter...
Large‐conductance voltage‐ and calcium‐activated potassium (BK) channels are large‐conductance calci...
Large‐conductance voltage‐ and calcium‐activated potassium (BK) channels are large‐conductance calci...
In the hippocampus, BK channels are preferentially localized in presynaptic glutamatergic terminals ...
Febrile seizures, in addition to being the most common seizure type of the developing human, may con...
Febrile seizures, in addition to being the most common seizure type of the developing human, may con...
We show here that the voltage-gated K+ channel Kv12.2 is a potent regulator of excitability in hippo...
Febrile seizures, in addition to being the most common seizure type of the developing human, may con...
During cognitive tasks, synchronicity of neural activity varies and is correlated with performance. ...
During cognitive tasks, synchronicity of neural activity varies and is correlated with performance. ...