ABSTRACT Voltage-gated delayed potassium current in molluscan neurons is characterized by a marked inactivation. Inactivation can accumulate between repetitive pulses, giving rise to current patterns in which the maximum current during a second voltage pulse is less than the current at the end of the preceding pulse (cumulative inactivation). Other features of inactivation of this current include an onset time-course that can be characterized by the sum of two exponential processes and an early minimum in the recovery-vs.-time curye. A simple four-state model is developed that can, when supplied with rate constants derived from voltage-clamp experiments, reproduce these features of inactivation. The model incorporates state-dependent inacti...
Inactivation of many ion channels occurs through largely voltage-independent transitions to an inact...
Prolonged depolarization induces a slow inactivation process in some Ki channels. We have studied io...
Prolonged depolarization induces a slow inactivation process in some Ki channels. We have studied io...
Inactivation of Kv3 (Kv1.3) delayed rectifier potassium channels was studied in the Xenopus oocyte e...
In this study, the time-course of the recovery from inactivation of molluscan ionic currents is exam...
Abstract – In this study, the time-course of the recovery from inactivation of molluscan ionic curre...
Inactivation of many ion channels occurs through largely voltage-independent transitions to an inact...
Neurons under voltage-clamp generate prolonged outward currents in response to depolarizing command ...
Ca currents flowing during voltage-clamp depolarizations were examined in axotomized Aplysia neurone...
Potassium current inactivation and reactivation in squid axons were measured from tail current ampli...
1. Action potentials recorded from isolated dorid neurone somata increase in duration, i.e. broaden,...
ABSTRACT Kv4.3 inactivation is a complex multiexponential process, which can occur from both closed ...
AbstractKv4.3 inactivation is a complex multiexponential process, which can occur from both closed a...
Voltage clamp currents from medium sized ganglion cells of Helix pomatia have a fast transient outwa...
Inactivation of Kv3 (Kv1.3) delayed rectifier potassium channels was studied in the Xenopus oocyte e...
Inactivation of many ion channels occurs through largely voltage-independent transitions to an inact...
Prolonged depolarization induces a slow inactivation process in some Ki channels. We have studied io...
Prolonged depolarization induces a slow inactivation process in some Ki channels. We have studied io...
Inactivation of Kv3 (Kv1.3) delayed rectifier potassium channels was studied in the Xenopus oocyte e...
In this study, the time-course of the recovery from inactivation of molluscan ionic currents is exam...
Abstract – In this study, the time-course of the recovery from inactivation of molluscan ionic curre...
Inactivation of many ion channels occurs through largely voltage-independent transitions to an inact...
Neurons under voltage-clamp generate prolonged outward currents in response to depolarizing command ...
Ca currents flowing during voltage-clamp depolarizations were examined in axotomized Aplysia neurone...
Potassium current inactivation and reactivation in squid axons were measured from tail current ampli...
1. Action potentials recorded from isolated dorid neurone somata increase in duration, i.e. broaden,...
ABSTRACT Kv4.3 inactivation is a complex multiexponential process, which can occur from both closed ...
AbstractKv4.3 inactivation is a complex multiexponential process, which can occur from both closed a...
Voltage clamp currents from medium sized ganglion cells of Helix pomatia have a fast transient outwa...
Inactivation of Kv3 (Kv1.3) delayed rectifier potassium channels was studied in the Xenopus oocyte e...
Inactivation of many ion channels occurs through largely voltage-independent transitions to an inact...
Prolonged depolarization induces a slow inactivation process in some Ki channels. We have studied io...
Prolonged depolarization induces a slow inactivation process in some Ki channels. We have studied io...