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Electrophysiological properties of neocortical neurons in vitro
B. W. Connors
,
M. J. Gutnick
, D. A. Prince
Research output
:
Contribution to journal
›
Article
›
peer-review
738
Scopus citations
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Keyphrases
Na +
100%
Electrophysiological Properties
100%
Neocortical Neurons
100%
In Situ
66%
Subthreshold
66%
Resting Potential
66%
Excitatory Postsynaptic Potential
66%
Inhibitory Postsynaptic Potential
66%
Membrane Behavior
66%
Membrane Properties
33%
Functional Properties
33%
Sensorimotor
33%
All-or-nothing
33%
Synaptic Activity
33%
Pharmacologic
33%
Small Populations
33%
Mn2+
33%
Cortical Neurons
33%
Action Potential
33%
Conductance
33%
K+ Current
33%
Low Intensity
33%
Tetrodotoxin
33%
Reversal Potential
33%
Guinea pig
33%
Reverse Polarity
33%
Co2+
33%
Intracellular Recording
33%
Current Pulse
33%
Synaptic Properties
33%
Spike Generation
33%
Input Resistance
33%
Current Clamp
33%
Current-voltage Relation
33%
Active Membranes
33%
Ca2+ Current
33%
Morphological Diversity
33%
Recording Conditions
33%
Cortical Slices
33%
Afterpotential
33%
Rectifying Property
33%
Spike Amplitude
33%
Neuroscience
In Vitro
100%
Behavior (Neuroscience)
66%
Resting Potential
66%
Synaptic Potential
66%
Inhibitory Postsynaptic Potential
66%
Action Potential
33%
Potassium Current
33%
Tetrodotoxin
33%
Reversal Potential
33%
Afterdischarge
33%