The complement of voltage-dependent K+ currents was investigated in hair cells of the frog crista ampullaris. The currents were recorded in transversal slices of the peripheral, intermediate and central regions of the crista by applying the patch clamp technique to cells located at different positions in the slices. Voltage-clamp recordings confirmed that cells located in each region have a distinctive complement of K+ channels. Detailed investigation of the currents in each region revealed that the complement of K+ channels in intermediate and central regions showed no variations among cells, whereas peripheral hair cells differed in the expression of two classes of A-type currents. These currents showed different kinetics of inactivation ...
Different procedures to isolate the K+ A-type current (IA) from other membrane currents were tested ...
Different procedures to isolate the K+ A-type current (IA) from other membrane currents were tested ...
Potassium-current inactivation and recovery kinetics are pivotal in sustaining dynamic processing of...
The complement of voltage-dependent K+ currents was investigated in hair cells of the frog crista ...
1. Electrical responses in hair cells located in the peripheral regions and in the central region of...
1. Electrical responses in hair cells located in the peripheral regions and in the central region of...
The possible presence of different types of delayed rectifier K+ current (IK) was studied in vestibu...
Voltage-dependent K+ currents in pear-shaped hair cells of the frog crista ampullaris were investiga...
Some properties of the inactivation process of delayed rectifier K+ current (Ik) were investigated i...
By using the whole-cell patch-clamp technique, evidence was obtained that there is a differential ex...
Some properties of the inactivation process of delayed rectifier K+ current (Ik) were investigated i...
In the present work we studied the intraregional expression of voltage-dependent Ca2+ and K+ curren...
By using the whole-cell patch-clamp technique, evidence was obtained that there is a differential ex...
The identity and the expression of inwardly rectifying ionic currents were studied using the whole-c...
Hair cells of the inner ear are endowed with different types of ionic channels. To characterize volt...
Different procedures to isolate the K+ A-type current (IA) from other membrane currents were tested ...
Different procedures to isolate the K+ A-type current (IA) from other membrane currents were tested ...
Potassium-current inactivation and recovery kinetics are pivotal in sustaining dynamic processing of...
The complement of voltage-dependent K+ currents was investigated in hair cells of the frog crista ...
1. Electrical responses in hair cells located in the peripheral regions and in the central region of...
1. Electrical responses in hair cells located in the peripheral regions and in the central region of...
The possible presence of different types of delayed rectifier K+ current (IK) was studied in vestibu...
Voltage-dependent K+ currents in pear-shaped hair cells of the frog crista ampullaris were investiga...
Some properties of the inactivation process of delayed rectifier K+ current (Ik) were investigated i...
By using the whole-cell patch-clamp technique, evidence was obtained that there is a differential ex...
Some properties of the inactivation process of delayed rectifier K+ current (Ik) were investigated i...
In the present work we studied the intraregional expression of voltage-dependent Ca2+ and K+ curren...
By using the whole-cell patch-clamp technique, evidence was obtained that there is a differential ex...
The identity and the expression of inwardly rectifying ionic currents were studied using the whole-c...
Hair cells of the inner ear are endowed with different types of ionic channels. To characterize volt...
Different procedures to isolate the K+ A-type current (IA) from other membrane currents were tested ...
Different procedures to isolate the K+ A-type current (IA) from other membrane currents were tested ...
Potassium-current inactivation and recovery kinetics are pivotal in sustaining dynamic processing of...