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Neurophysiology / Neurology / Cellular neuroscience / Cell signaling / Excitatory postsynaptic potential / Inhibitory postsynaptic potential / Pyramidal cell / Action potential / Apical dendrite / Biology / Neuroscience / Nervous system


ARTICLES HCN hyperpolarization-activated cation channels inhibit EPSPs by interactions with M-type K+ channels © 2009 Nature America, Inc. All rights reserved.
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Document Date: 2010-05-26 13:59:28


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Carnevale / London / Suh / /

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Neural Systems / Cambridge University Press / R.B. & Siegelbaum S.A. / Ih / CA1 / MIT Press / AMP / McCormick / S.A.S. L. / J. Comp / Nature America Inc. / Anderson A.E. / J.T. & Siegelbaum S.A. / /

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United States / Columbia / United Kingdom / /

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pence / /

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Company Expansion / Analyst Recommendation / Man-Made Disaster / /

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New York State Psychiatric Institute / Hughes Medical Institute / Columbia University / /

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memory networks / treatment of epileptic disorders / dendritic processing / /

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Ih channel / /

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Cambridge University / New York State Psychiatric Institute / MIT / 4Howard Hughes Medical Institute / Columbia University / New York / /

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Nat / Schroeder / /

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AUTHOR / Medical Scientist / candidate for mediating the inhibitory effects / Health Director / Representative / messenger / probable mediator / /

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ZD7288 / Sigma DP1 Digital Camera / S.A.S / HCN1 / /

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Missouri / M / British Columbia / New York / Massachusetts / Northern Territory / /

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NATURE NEUROSCIENCE / /

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alpha / Neuroscience / /

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http /

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