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Na
+
conductance and the threshold for repetitive neuronal firing
Orna Matzner,
Marshall Devor
*
*
Corresponding author for this work
Alexander Silberman Institute of Life Sciences
Research output
:
Contribution to journal
›
Article
›
peer-review
92
Scopus citations
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+
conductance and the threshold for repetitive neuronal firing'. Together they form a unique fingerprint.
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Keyphrases
Na +
100%
Conductance
100%
Neuronal Firing
100%
Firing Frequency
100%
Repetitive Firing
66%
Stimulus Encoding
66%
Rhythmogenesis
66%
Stimulus Intensity
33%
Regulatory Mechanism
33%
Action Potential
33%
Na+ Channel
33%
Dynamic Range
33%
Neuronal Excitability
33%
Voltage Clamp
33%
Initial Segment
33%
Firing Process
33%
Sensory Ending
33%
Threshold Current
33%
Suprathreshold
33%
Squid Giant Axon
33%
Hodgkin-Huxley
33%
Monotonic Increase
33%
Rhythmic Firing
33%
Intense Current
33%
Membrane Incorporation
33%
Membrane Parameters
33%
Electrogenesis
33%
Hyperexcitable
33%
Axon Hillock
33%
Neuroscience
Axon
100%
Action Potential
50%
Sodium Channel
50%
Neuronal Excitability
50%