Nav1.6 but not KCa3.1 channels contribute to heterogeneity in coding abilities and dynamics of action potentials in the L5 neocortical pyramidal neurons
Author:
Funder
Russian Science Foundation
Publisher
Elsevier BV
Subject
Cell Biology,Molecular Biology,Biochemistry,Biophysics
Reference23 articles.
1. Anatomy and physiology of the thick-tufted layer 5 pyramidal neuron;Ramaswamy;Front. Cell. Neurosci.,2015
2. Cell-type specific properties of pyramidal neurons in neocortex underlying a layout that is modifiable depending on the cortical area;Groh;Cereb Cortex,2010
3. Electrophysiological properties of genetically identified subtypes of layer 5 neocortical pyramidal neurons: Ca(2)(+) dependence and differential modulation by norepinephrine;Guan;J. Neurophysiol.,2015
4. Ca(2+)-activated KCa3.1 potassium channels contribute to the slow afterhyperpolarization in L5 neocortical pyramidal neurons;Roshchin;Sci. Rep.,2020
5. Layer V neurons in mouse cortex projecting to different targets have distinct physiological properties;Hattox;J. Neurophysiol.,2007
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3. Sodium Channels Involved in the Initiation of Action Potentials in Invertebrate and Mammalian Neurons;Biophysica;2022-08-11
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