Genetic variations in the large-conductance, voltage- and calcium activated potassium channels (BK channels) have been recently implicated in mental retardation, autism and schizophrenia which all come along with severe cognitive impairments. In the present study we investigate the effects of functional BK channel deletion on cognition using a genetic mouse model with a knock-out of the gene for the pore forming α-subunit of the channel. We tested the F1 generation of a hybrid SV129/C57BL6 mouse line in which the slo1 gene was deleted in both parent strains. We first evaluated hearing and motor function to establish the suitability of this model for cognitive testing. Auditory brain stem responses to click stimuli showed no threshold differ...
AbstractDown syndrome (DS) mouse models exhibit cognitive deficits, and are used for studying the ne...
Background: Potassium channels have been shown to be involved in neural plasticity and learning. Kv4...
Mutations in the cereblon (CRBN) gene cause human intellectual disability, one of the most common co...
Genetic variations in the large-conductance, voltage- and calcium activated potassium channels (BK c...
Genetic variations in the large-conductance, voltage- and calcium activated potassium channels (BK c...
Habituation is considered the most basic form of learning. It describes the decrease of a behavioral...
BK channels are large conductance potassium channels activated by both Ca2+ concentration and membra...
This article is distributed under the terms of an Attribution-Noncommercial-Share Alike-No Mirror Si...
A-type K+ channels are known to regulate neuronal firing, but their role in repetitive firing and le...
Voltage-gated potassium (Kv) channels are important regulators of normal neuronal function. In neuro...
Habituation is considered the most basic form of learning. It describes the decrease of a behavioral...
The large conductance voltage- and Ca2+-activated potassium (BK) channel has been suggested to play ...
A-type K+ channels are known to regulate neuronal firing, but their role in repetitive firing and le...
Thesis (Ph. D.)--University of Washington, 1996Mutations at the Drosophila Shaker locus cause motor ...
BK channels are known regulators of neuronal excitability, synaptic plasticity, and memory. Our prev...
AbstractDown syndrome (DS) mouse models exhibit cognitive deficits, and are used for studying the ne...
Background: Potassium channels have been shown to be involved in neural plasticity and learning. Kv4...
Mutations in the cereblon (CRBN) gene cause human intellectual disability, one of the most common co...
Genetic variations in the large-conductance, voltage- and calcium activated potassium channels (BK c...
Genetic variations in the large-conductance, voltage- and calcium activated potassium channels (BK c...
Habituation is considered the most basic form of learning. It describes the decrease of a behavioral...
BK channels are large conductance potassium channels activated by both Ca2+ concentration and membra...
This article is distributed under the terms of an Attribution-Noncommercial-Share Alike-No Mirror Si...
A-type K+ channels are known to regulate neuronal firing, but their role in repetitive firing and le...
Voltage-gated potassium (Kv) channels are important regulators of normal neuronal function. In neuro...
Habituation is considered the most basic form of learning. It describes the decrease of a behavioral...
The large conductance voltage- and Ca2+-activated potassium (BK) channel has been suggested to play ...
A-type K+ channels are known to regulate neuronal firing, but their role in repetitive firing and le...
Thesis (Ph. D.)--University of Washington, 1996Mutations at the Drosophila Shaker locus cause motor ...
BK channels are known regulators of neuronal excitability, synaptic plasticity, and memory. Our prev...
AbstractDown syndrome (DS) mouse models exhibit cognitive deficits, and are used for studying the ne...
Background: Potassium channels have been shown to be involved in neural plasticity and learning. Kv4...
Mutations in the cereblon (CRBN) gene cause human intellectual disability, one of the most common co...