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      Kv1 channels control spike threshold dynamics and spike timing in cortical pyramidal neurones.

      1 ,
      The Journal of physiology
      Wiley

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          Abstract

          Previous studies showed that cortical pyramidal neurones (PNs) have a dynamic spike threshold that functions as a high-pass filter, enhancing spike timing in response to high-frequency input. While it is commonly assumed that Na(+) channel inactivation is the primary mechanism of threshold accommodation, the possible role of K(+) channel activation in fast threshold changes has not been well characterized. The present study tested the hypothesis that low-voltage activated Kv1 channels affect threshold dynamics in layer 2-3 PNs, using α-dendrotoxin (DTX) or 4-aminopyridine (4-AP) to block these conductances. We found that Kv1 blockade reduced the dynamic changes of spike threshold in response to a variety of stimuli, including stimulus-evoked synaptic input, current steps and ramps of varied duration, and noise. Analysis of the responses to noise showed that Kv1 channels increased the coherence of spike output with high-frequency components of the stimulus. A simple model demonstrates that a dynamic spike threshold can account for this effect. Our results show that the Kv1 conductance is a major mechanism that contributes to the dynamic spike threshold and precise spike timing of cortical PNs.

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          Author and article information

          Journal
          J Physiol
          The Journal of physiology
          Wiley
          1469-7793
          0022-3751
          Nov 01 2011
          : 589
          : Pt 21
          Affiliations
          [1 ] Neurology Section, Department of Veterans Affairs Medical Centre, Seattle, WA 98108, USA. higgsm@uw.edu
          Article
          jphysiol.2011.216721
          10.1113/jphysiol.2011.216721
          3225669
          21911608
          8be2253c-a839-4b6d-8776-8253270a670a
          History

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