The expression and properties of ionic channels were investigated in dissociated neurons from neonatal and adult rat intracardiac ganglia. Changes in the hyperpolarization-activated and ATP-sensitive K+ conductances during postnatal development and their role in neuronal excitability were examined. The hyperpolarization-activated nonselective cation current, I-h, was observed in all neurons studied and displayed slow time-dependent rectification. An inwardly rectifying K+ current, I-K(I), was present in a population of neurons from adult but not neonatal rats and was sensitive to block by extracellular Ba2+. Using the perforated-patch recording configuration, an ATP-sensitive K+ (K-ATP) conductance was identified in greater than or equal to...
AbstractCardiac K+ channels are responsible for repolarization of the action potential and are the t...
AbstractReactive oxygen species (ROS) are produced as by-products of oxidative metabolism and occur ...
Voltage-gated potassium (K) channels are important in controlling a neuron's excitability. In this t...
The expression and properties of ionic channels were investigated in dissociated neurons from neonat...
1. An ATP-sensitive K+ (K-ATP) conductance has been identified using the perforated patch recording ...
The hyperpolarization-activated nonselective cation current, I h, was investigated in neonatal and a...
1. An ATP-sensitive K+ (KATP) conductance has been identified using the perforated patch recording c...
We charted postnatal changes in the intrinsic electrophysiological properties and synaptic responses...
The electrical characteristics of isolated neonatal rat intracardiac neurons were examined at 22 and...
The electrical characteristics of isolated neonatal rat intracardiac neurons were examined at 22 and...
1. Whole-cell K+ currents contributing to the resting membrane potential and repolarization of the a...
Reactive oxygen species (ROS) are produced as by-products of oxidative metabolism and occur in the h...
Reactive oxygen species (ROS) are produced as by-products of oxidative metabolism and occur in the h...
This study was designed to investigate the role and regulation of arterial K+ channels during postna...
AbstractReactive oxygen species (ROS) are produced as by-products of oxidative metabolism and occur ...
AbstractCardiac K+ channels are responsible for repolarization of the action potential and are the t...
AbstractReactive oxygen species (ROS) are produced as by-products of oxidative metabolism and occur ...
Voltage-gated potassium (K) channels are important in controlling a neuron's excitability. In this t...
The expression and properties of ionic channels were investigated in dissociated neurons from neonat...
1. An ATP-sensitive K+ (K-ATP) conductance has been identified using the perforated patch recording ...
The hyperpolarization-activated nonselective cation current, I h, was investigated in neonatal and a...
1. An ATP-sensitive K+ (KATP) conductance has been identified using the perforated patch recording c...
We charted postnatal changes in the intrinsic electrophysiological properties and synaptic responses...
The electrical characteristics of isolated neonatal rat intracardiac neurons were examined at 22 and...
The electrical characteristics of isolated neonatal rat intracardiac neurons were examined at 22 and...
1. Whole-cell K+ currents contributing to the resting membrane potential and repolarization of the a...
Reactive oxygen species (ROS) are produced as by-products of oxidative metabolism and occur in the h...
Reactive oxygen species (ROS) are produced as by-products of oxidative metabolism and occur in the h...
This study was designed to investigate the role and regulation of arterial K+ channels during postna...
AbstractReactive oxygen species (ROS) are produced as by-products of oxidative metabolism and occur ...
AbstractCardiac K+ channels are responsible for repolarization of the action potential and are the t...
AbstractReactive oxygen species (ROS) are produced as by-products of oxidative metabolism and occur ...
Voltage-gated potassium (K) channels are important in controlling a neuron's excitability. In this t...