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Nodal Na
+
and Ca
2+
flux dynamics in cortical myelinated axons
Oron Kotler
, Kenichi Miyazaki
, Yana Khrapunsky
, William N. Ross
,
Ilya A. Fleidervish
Department of Physiology and Cell Biology
The Shraga Segal Department of Microbiology, Immunology and Genetics
Research output
:
Contribution to journal
›
Article
›
peer-review
Overview
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Dive into the research topics of 'Nodal Na
+
and Ca
2+
flux dynamics in cortical myelinated axons'. Together they form a unique fingerprint.
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Keyphrases
Na +
100%
Myelinated Axons
100%
Ca2+ Flux
100%
Ca2+
50%
Action Potential
37%
Voltage Gating
25%
Node of Ranvier
25%
Computational Model
12%
Intracellular Signaling
12%
Brain Slice
12%
Distribution Properties
12%
Ca2+ Influx
12%
Time to Peak
12%
Upstroke
12%
Minimal Impact
12%
Ca2+ Channels
12%
Ion Channels
12%
High-speed Fluorescence Imaging
12%
Long-range Propagation
12%
Biophysical Properties
12%
Neuronal Connectivity
12%
Lateral Diffusion
12%
Ca2+ Dynamics
12%
Active Transport
12%
Cortical Brain
12%
Repolarization
12%
Channel Inactivation
12%
Diffusion-based
12%
Na+ Influx
12%
Internode
12%
Layer 5 Pyramidal Neurons
12%
Voltage-gated Ca2+ Channels
12%
Action Potential Conduction
12%
Spike Recovery
12%
Nodal Regions
12%
Deactivation Kinetics
12%
Nodal Length
12%
OGB-1
12%
Temperature Dependence
12%
Functional Evidence
12%
Temperature-independent
12%
Morphological Evidence
12%
Neuroscience
Action Potential
100%
Axon
100%
Calcium Channel
75%
Sodium Channel
50%
Brain Slice
25%
Intracellular Signaling
25%
Ion Channel
25%
Active Transport
25%