Low-threshold voltage-gated potassium currents (I LT) activating close to resting membrane potentials play an important role in shaping action potential (AP) firing patterns. In the medial nucleus of the trapezoid body (MNTB), I LT ensures generation of single APs during each EPSP, so that the timing and pattern of AP firing is preserved on transmission across this relay synapse (calyx of Held). This temporal information is critical for computation of sound location using interaural timing and level differences.I LT currents are generated by dendrotoxin-I-sensitive, Shaker-related K+ channels; our immunohistochemistry confirms that MNTB neurons express Kv1.1, Kv1.2, and Kv1.6 subunits. We used subunit-specific toxins to separate I LT into t...
The ionic basis of excitability requires identification and characterisation of expressed channels a...
Many neurons transduce synaptic inputs into action potentials (APs) according to rules that reflect ...
Spiral ganglion neurons possess a rich repertoire of ion channels that underlies differential firing...
The medial nucleus of the trapezoid body (MNTB) rapidly and precisely relays auditory information us...
The vast complexity of native heteromeric K+ channels is largely unexplored. Defining the compositio...
International audienceIn the nucleus of the tractus solitarii (NTS), a large proportion of neurones ...
Kv1.2 channels are prominently expressed in neurons where they help to set the threshold of action p...
Kv3 voltage‐gated potassium channels mediate action potential (AP) repolarization. The relative impo...
In the last years it has been increasingly clear that KV-channel activity modulates neurotransmitter...
Voltage-dependent ion channels have specific patterns of distribution along the neuronal plasma memb...
Inactivation of potassium currents during maintained firing results in a progressive increase in act...
AbstractThe discrete localization of ion channels is a critical determinant of neuronal excitability...
The intrinsic membrane properties of neurons in the central nervous system are controlled by the tig...
Voltage-gated potassium channels of the Kv3 subfamily mediate fast repolarisation of action potentia...
UnrestrictedLocalization of voltage-gated potassium channels to specific subcellular compartments in...
The ionic basis of excitability requires identification and characterisation of expressed channels a...
Many neurons transduce synaptic inputs into action potentials (APs) according to rules that reflect ...
Spiral ganglion neurons possess a rich repertoire of ion channels that underlies differential firing...
The medial nucleus of the trapezoid body (MNTB) rapidly and precisely relays auditory information us...
The vast complexity of native heteromeric K+ channels is largely unexplored. Defining the compositio...
International audienceIn the nucleus of the tractus solitarii (NTS), a large proportion of neurones ...
Kv1.2 channels are prominently expressed in neurons where they help to set the threshold of action p...
Kv3 voltage‐gated potassium channels mediate action potential (AP) repolarization. The relative impo...
In the last years it has been increasingly clear that KV-channel activity modulates neurotransmitter...
Voltage-dependent ion channels have specific patterns of distribution along the neuronal plasma memb...
Inactivation of potassium currents during maintained firing results in a progressive increase in act...
AbstractThe discrete localization of ion channels is a critical determinant of neuronal excitability...
The intrinsic membrane properties of neurons in the central nervous system are controlled by the tig...
Voltage-gated potassium channels of the Kv3 subfamily mediate fast repolarisation of action potentia...
UnrestrictedLocalization of voltage-gated potassium channels to specific subcellular compartments in...
The ionic basis of excitability requires identification and characterisation of expressed channels a...
Many neurons transduce synaptic inputs into action potentials (APs) according to rules that reflect ...
Spiral ganglion neurons possess a rich repertoire of ion channels that underlies differential firing...