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Research ArticleConfirmation, Development

Postnatal Increases in Axonal Conduction Velocity of an Identified Drosophila Interneuron Require Fast Sodium, L-Type Calcium and Shaker Potassium Channels

Dimitrios Kadas, Carsten Duch and Christos Consoulas
eNeuro 28 June 2019, 6 (4) ENEURO.0181-19.2019; https://doi.org/10.1523/ENEURO.0181-19.2019
Dimitrios Kadas
1Laboratory of Experimental Physiology, National and Kapodistrian University of Athens, Athens 11527, Greece
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Carsten Duch
2Institute of Developmental Biology and Neurobiology, Johannes Gutenberg University Mainz, Mainz 55122, Germany
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Christos Consoulas
1Laboratory of Experimental Physiology, National and Kapodistrian University of Athens, Athens 11527, Greece
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eneuro: 6 (4)
eNeuro
Vol. 6, Issue 4
July/August 2019
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Postnatal Increases in Axonal Conduction Velocity of an Identified Drosophila Interneuron Require Fast Sodium, L-Type Calcium and Shaker Potassium Channels
Dimitrios Kadas, Carsten Duch, Christos Consoulas
eNeuro 28 June 2019, 6 (4) ENEURO.0181-19.2019; DOI: 10.1523/ENEURO.0181-19.2019

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Postnatal Increases in Axonal Conduction Velocity of an Identified Drosophila Interneuron Require Fast Sodium, L-Type Calcium and Shaker Potassium Channels
Dimitrios Kadas, Carsten Duch, Christos Consoulas
eNeuro 28 June 2019, 6 (4) ENEURO.0181-19.2019; DOI: 10.1523/ENEURO.0181-19.2019
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Keywords

  • action potential propagation
  • escape
  • giant fiber
  • insect
  • postnatal maturation
  • voltage-gated ion channels

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Development

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