The use of the maximum rate-of-rise of the action potential (Vmax) as a measure of the sodium conductance in excitable membranes is invalid. In the case of membrane action potentials, Vmax depends on the total ionic current across the membrane; drugs or conditions that alter the potassium or leak conductances will also affect Vmax. Likewise, long-term depolarization of the membrane lessens the fraction of total ionic current that passes through the sodium channels by increasing potassium conductance and inactivating the sodium conductance, and thereby reduces the effect of Vmax of drugs that specifically block sodium channels. The resultant artifact, an apparent voltage-dependent potency of such drugs, is theoretically simulated for the eff...
The change in capacity of squid axon membrane during hyper- and depolarizations was investigated in ...
The use-dependent block of sodium channels by tetrodotoxin (TTX) has been studied in cRNA-injected X...
Voltage-gated Na(+) channels (NaV channels) are specifically blocked by guanidinium toxins such as t...
The use of the maximum rate-of-rise of the action potential (Vmax) as a measure of the sodium conduc...
The original experiments of Cole and Moore (1960. Biophys. J. 1:161–202.), using conditioning and te...
A voltage clamp technique was used to study sodium currents and gating currents in squid axons inter...
Perfused squid axons in which K-conductance is blocked show, under voltage clamp, incomplete inactiv...
The inward sodium current in cardiac muscle is difficult to study by voltage clamp methods, so vario...
The lowering of external sodium raised both the constant quantity threshold, Qo, and the rheobase, I...
SUMMARY The inward ionic current in the atrium has been measured by electronic differentiation of th...
<p>Raw tracings of both AHP +ve neurons (A) and AHP -ve neurons (B) show a decrease in Na<sup>+</sup...
We have previously studied single, voltage-dependent, saxitoxin-(STX) blockable sodium channels from...
The short-chain phospholipid, diheptanoyl phosphatidylcholine, at 520 microM, reduced the maximum in...
In both tetrodotoxin-resistant (TTX-R) and tetrodotoxin-sensi-tive (TTX-S) sodium channels, deltamet...
The sodium conductance of the membrane of the giant axon of squid was isolated by the use of potassi...
The change in capacity of squid axon membrane during hyper- and depolarizations was investigated in ...
The use-dependent block of sodium channels by tetrodotoxin (TTX) has been studied in cRNA-injected X...
Voltage-gated Na(+) channels (NaV channels) are specifically blocked by guanidinium toxins such as t...
The use of the maximum rate-of-rise of the action potential (Vmax) as a measure of the sodium conduc...
The original experiments of Cole and Moore (1960. Biophys. J. 1:161–202.), using conditioning and te...
A voltage clamp technique was used to study sodium currents and gating currents in squid axons inter...
Perfused squid axons in which K-conductance is blocked show, under voltage clamp, incomplete inactiv...
The inward sodium current in cardiac muscle is difficult to study by voltage clamp methods, so vario...
The lowering of external sodium raised both the constant quantity threshold, Qo, and the rheobase, I...
SUMMARY The inward ionic current in the atrium has been measured by electronic differentiation of th...
<p>Raw tracings of both AHP +ve neurons (A) and AHP -ve neurons (B) show a decrease in Na<sup>+</sup...
We have previously studied single, voltage-dependent, saxitoxin-(STX) blockable sodium channels from...
The short-chain phospholipid, diheptanoyl phosphatidylcholine, at 520 microM, reduced the maximum in...
In both tetrodotoxin-resistant (TTX-R) and tetrodotoxin-sensi-tive (TTX-S) sodium channels, deltamet...
The sodium conductance of the membrane of the giant axon of squid was isolated by the use of potassi...
The change in capacity of squid axon membrane during hyper- and depolarizations was investigated in ...
The use-dependent block of sodium channels by tetrodotoxin (TTX) has been studied in cRNA-injected X...
Voltage-gated Na(+) channels (NaV channels) are specifically blocked by guanidinium toxins such as t...