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Interactions among Diameter, Myelination, and the Na/K Pump Affect Axonal Resilience to High-Frequency Spiking

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Researchers found that slowing the activation of K+ current can increase the Na+ influx rate, and the effect of minimizing the overlapped between Na+ and K+ currents on spike propagation resilience depended on complex interactions among diameter, myelination, and the Na/K pump density.
[Proceedings of the National Academy of Sciences of the United States of America]
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Abstract
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