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K Kaczmarek

Showing results (1-10 of 277) with videos related to

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Biophysical Chemistry|May 1, 1976
Frequency sensitive biochemical reactionsL K Kaczmarek
Nature Reviews. Neuroscience|September 22, 2006
Non-conducting functions of voltage-gated ion channelsLeonard K Kaczmarek
Trends in Neurosciences|August 10, 2021
The Na<sub>V</sub>y paradox: reducing sodium currents increases excitabilityLeonard K Kaczmarek
The Journal of Physiology|May 4, 2010
Controlling auditory excitability: the benefits of a cultured environmentLeonard K Kaczmarek
Plos Computational Biology|March 23, 2012
Gradients and modulation of K(+) channels optimize temporal accuracy in networks of auditory neuronsLeonard K Kaczmarek
Neuron|March 1, 2006
Policing the ball: a new potassium channel subunit determines inactivation rateLeonard K Kaczmarek
Neuron|August 23, 2019
Loss of Na<sub>V</sub>1.2-Dependent Backpropagating Action Potentials in Dendrites Contributes to Autism and Intellectual DisabilityLeonard K Kaczmarek
Biological Cybernetics|May 17, 1976
A model of cell firing patterns during epileptic seizuresL K Kaczmarek
Advances in Second Messenger and Phosphoprotein Research|January 1, 1988
The regulation of neuronal calcium and potassium channels by protein phosphorylationL K Kaczmarek
The Journal of General Physiology|February 29, 2000
Mitochondrial memory banks. Calcium stores keep a record of neuronal stimulationL K Kaczmarek
Pageof 28

Showing results (1-10 of 277) with videos related to

Sort By:
Pageof 28
Biophysical Chemistry|May 1, 1976
Frequency sensitive biochemical reactionsL K Kaczmarek
Nature Reviews. Neuroscience|September 22, 2006
Non-conducting functions of voltage-gated ion channelsLeonard K Kaczmarek
Trends in Neurosciences|August 10, 2021
The Na<sub>V</sub>y paradox: reducing sodium currents increases excitabilityLeonard K Kaczmarek
The Journal of Physiology|May 4, 2010
Controlling auditory excitability: the benefits of a cultured environmentLeonard K Kaczmarek
Plos Computational Biology|March 23, 2012
Gradients and modulation of K(+) channels optimize temporal accuracy in networks of auditory neuronsLeonard K Kaczmarek
Neuron|March 1, 2006
Policing the ball: a new potassium channel subunit determines inactivation rateLeonard K Kaczmarek
Neuron|August 23, 2019
Loss of Na<sub>V</sub>1.2-Dependent Backpropagating Action Potentials in Dendrites Contributes to Autism and Intellectual DisabilityLeonard K Kaczmarek
Biological Cybernetics|May 17, 1976
A model of cell firing patterns during epileptic seizuresL K Kaczmarek
Advances in Second Messenger and Phosphoprotein Research|January 1, 1988
The regulation of neuronal calcium and potassium channels by protein phosphorylationL K Kaczmarek
The Journal of General Physiology|February 29, 2000
Mitochondrial memory banks. Calcium stores keep a record of neuronal stimulationL K Kaczmarek
Pageof 28