The cardiac sodium current was studied in guinea pig ventricular myocytes using the cell-attached patch voltage clamp at 37 degrees C in the presence of 145 mM external sodium concentration. When using large patch pipettes (access resistance, 1–2 M omega), the capacity current transient duration was typically 70 microseconds for voltage clamp steps up to 150 mV. At 37 degrees C the maximum inward sodium current peaked in approximately 200 microseconds after the onset of a clamp step and at this strong depolarization, less than 10% of the sodium current developed during the capacity transient. The sodium current developed smoothly and the descending limb of the current-voltage relationship usually spanned a range of 40 mV. Moreover, currents...
The voltage and time-dependence of the tetrodotoxin sensitive, fast sodium current in cardiac muscle...
The sodium (Na) channel is the fundamental unit of excitability in heart muscle. This channel has be...
The inward sodium current in cardiac muscle is difficult to study by voltage clamp methods, so vario...
The sodium (Na) channel is the fundamental unit of excitability in heart muscle. This channel has be...
Voltage-gated sodium channels are crucial to action potential propagation in excitable tissues. Beca...
Study of the excitatory sodium current (INa) intact heart muscle has been hampered by the limitation...
BACKGROUND: The SCN5A encoded sodium current (I(Na)) generates the action potential (AP) upstroke an...
Background: The SCN5A encoded sodium current (INa) generates the action potential (AP) upstroke and ...
The voltage and time-dependence of the tetrodotoxin sensitive, fast sodium current in cardiac muscle...
SUMMARY. Cardiac automaticity is partly due to a diastolic sodium current. Possible mediators of thi...
The voltage clamp experiments were conducted on single frog ventricular cells with the oil gap metho...
The voltage clamp experiments were conducted on single frog ventricular cells with the oil gap metho...
The voltage clamp experiments were conducted on single frog ventricular cells with the oil gap metho...
The different sodium channel currents (INa) were reported in myocardium, neuron, and skeletal muscle...
The voltage clamp experiments were conducted on single frog ventricular cells with the oil gap metho...
The voltage and time-dependence of the tetrodotoxin sensitive, fast sodium current in cardiac muscle...
The sodium (Na) channel is the fundamental unit of excitability in heart muscle. This channel has be...
The inward sodium current in cardiac muscle is difficult to study by voltage clamp methods, so vario...
The sodium (Na) channel is the fundamental unit of excitability in heart muscle. This channel has be...
Voltage-gated sodium channels are crucial to action potential propagation in excitable tissues. Beca...
Study of the excitatory sodium current (INa) intact heart muscle has been hampered by the limitation...
BACKGROUND: The SCN5A encoded sodium current (I(Na)) generates the action potential (AP) upstroke an...
Background: The SCN5A encoded sodium current (INa) generates the action potential (AP) upstroke and ...
The voltage and time-dependence of the tetrodotoxin sensitive, fast sodium current in cardiac muscle...
SUMMARY. Cardiac automaticity is partly due to a diastolic sodium current. Possible mediators of thi...
The voltage clamp experiments were conducted on single frog ventricular cells with the oil gap metho...
The voltage clamp experiments were conducted on single frog ventricular cells with the oil gap metho...
The voltage clamp experiments were conducted on single frog ventricular cells with the oil gap metho...
The different sodium channel currents (INa) were reported in myocardium, neuron, and skeletal muscle...
The voltage clamp experiments were conducted on single frog ventricular cells with the oil gap metho...
The voltage and time-dependence of the tetrodotoxin sensitive, fast sodium current in cardiac muscle...
The sodium (Na) channel is the fundamental unit of excitability in heart muscle. This channel has be...
The inward sodium current in cardiac muscle is difficult to study by voltage clamp methods, so vario...