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100:1897-1908, 2008. First published Aug 20, 2008; doi:10.1152/jn.90346.2008  J Neurophysiol Wendy W. Wu, C. Savio Chan, D. James Surmeier and John F. Disterhoft You might find this additional information useful... 76 articles, 47 of which you can access free at: This article cites http://jn.physiology.org/cgi/content/full/100/4/1897#BIBL 6 other HighWire hosted articles, the first 5 are: This article has been cited by [PDF]  [Full Text]  [Abstract] , March 15,2009; 587(6): 1265-1281.  J. Physiol. J. T. Brown and A. D. Randall intrinsic plasticity in hippocampal CA3 pyramidal neurons Activity-depen dent depression of the spike after-depolarizat ion generates long-lasting [PDF]  [Full Text] , March 15,2009; 587(6): 1143-1144.  J. Physiol. S. Schorge and M. C. Walker A self-activating intrinsic brake on bursting in CA3 neurons [PDF]  [Full Text]  [Abstract] , September 1,2009; 587(17): 4235-4247.  J. Physiol. Q.-H. Chen and G. M. Toney medulla is regulated by small-conductance Ca2+-activated K+ channels Excitability of paraventricular nucleus neurones that project to the rostral ventrolateral [PDF]  [Abstract] , February 1,2010; 16(1): 51-64.  Neuroscientist H. Misonou Diseased Brains Homeostatic Regulation of Neuronal Excitability by K+ Channels in Normal and [PDF] [Full Text] [Abstract] , June 1,2010; 107(22): 10232-10237. PNAS and T. J. Jentsch A. V. Tzingounis, M. Heidenreich, T. Kharkovets, G. Spitzmaul, H. S. Jensen, R. A. Nicoll  current in mouse hippocampus The KCNQ5 potassium channel mediates a component of the afterhyperpolarization including high-resolution figures, can be found at: Updated information and services http://jn.physiology.org/cgi/content/full/100/4/1897 can be found at:  Journal of Neurophysiology about Additional material and information http://www.the-aps.org/publications/jn This information is current as of October 27, 2010 . http://www.the-aps.org/. American Physiological Society. ISSN: 0022-3077, ESSN: 1522-159 8. Visit our website at  (monthly) by the American Physiological Society, 9650 Rockville Pike, Bethesda MD 2081 4-3991. Copyright © 2008 by the publishes original articles on the function of the nervous system. It is published 12 times a year  Journal of Neurophysiology   o n  O  c  t   o  b  e r 2 7  , 2  0 1  0  j  .  p h  y  s i   o l   o  g  y .  o r  g D  o w l   o  a  d  e  d f  r  o  

Wendy W. Wu et al- Coupling of L-Type Ca^2+ Channels to KV7/KCNQ Channels Creates a Novel, Activity-Dependent, Homeostatic Intrinsic Plasticity

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Page 2: Wendy W. Wu et al- Coupling of L-Type Ca^2+ Channels to KV7/KCNQ Channels Creates a Novel, Activity-Dependent, Homeostatic Intrinsic Plasticity

8/3/2019 Wendy W. Wu et al- Coupling of L-Type Ca^2+ Channels to KV7/KCNQ Channels Creates a Novel, Activity-Dependent, Homeostatic Intrinsic Plasticity

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Page 3: Wendy W. Wu et al- Coupling of L-Type Ca^2+ Channels to KV7/KCNQ Channels Creates a Novel, Activity-Dependent, Homeostatic Intrinsic Plasticity

8/3/2019 Wendy W. Wu et al- Coupling of L-Type Ca^2+ Channels to KV7/KCNQ Channels Creates a Novel, Activity-Dependent, Homeostatic Intrinsic Plasticity

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Page 4: Wendy W. Wu et al- Coupling of L-Type Ca^2+ Channels to KV7/KCNQ Channels Creates a Novel, Activity-Dependent, Homeostatic Intrinsic Plasticity

8/3/2019 Wendy W. Wu et al- Coupling of L-Type Ca^2+ Channels to KV7/KCNQ Channels Creates a Novel, Activity-Dependent, Homeostatic Intrinsic Plasticity

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Page 5: Wendy W. Wu et al- Coupling of L-Type Ca^2+ Channels to KV7/KCNQ Channels Creates a Novel, Activity-Dependent, Homeostatic Intrinsic Plasticity

8/3/2019 Wendy W. Wu et al- Coupling of L-Type Ca^2+ Channels to KV7/KCNQ Channels Creates a Novel, Activity-Dependent, Homeostatic Intrinsic Plasticity

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Page 6: Wendy W. Wu et al- Coupling of L-Type Ca^2+ Channels to KV7/KCNQ Channels Creates a Novel, Activity-Dependent, Homeostatic Intrinsic Plasticity

8/3/2019 Wendy W. Wu et al- Coupling of L-Type Ca^2+ Channels to KV7/KCNQ Channels Creates a Novel, Activity-Dependent, Homeostatic Intrinsic Plasticity

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Page 7: Wendy W. Wu et al- Coupling of L-Type Ca^2+ Channels to KV7/KCNQ Channels Creates a Novel, Activity-Dependent, Homeostatic Intrinsic Plasticity

8/3/2019 Wendy W. Wu et al- Coupling of L-Type Ca^2+ Channels to KV7/KCNQ Channels Creates a Novel, Activity-Dependent, Homeostatic Intrinsic Plasticity

http://slidepdf.com/reader/full/wendy-w-wu-et-al-coupling-of-l-type-ca2-channels-to-kv7kcnq-channels-creates 7/13

Page 8: Wendy W. Wu et al- Coupling of L-Type Ca^2+ Channels to KV7/KCNQ Channels Creates a Novel, Activity-Dependent, Homeostatic Intrinsic Plasticity

8/3/2019 Wendy W. Wu et al- Coupling of L-Type Ca^2+ Channels to KV7/KCNQ Channels Creates a Novel, Activity-Dependent, Homeostatic Intrinsic Plasticity

http://slidepdf.com/reader/full/wendy-w-wu-et-al-coupling-of-l-type-ca2-channels-to-kv7kcnq-channels-creates 8/13

Page 9: Wendy W. Wu et al- Coupling of L-Type Ca^2+ Channels to KV7/KCNQ Channels Creates a Novel, Activity-Dependent, Homeostatic Intrinsic Plasticity

8/3/2019 Wendy W. Wu et al- Coupling of L-Type Ca^2+ Channels to KV7/KCNQ Channels Creates a Novel, Activity-Dependent, Homeostatic Intrinsic Plasticity

http://slidepdf.com/reader/full/wendy-w-wu-et-al-coupling-of-l-type-ca2-channels-to-kv7kcnq-channels-creates 9/13

Page 10: Wendy W. Wu et al- Coupling of L-Type Ca^2+ Channels to KV7/KCNQ Channels Creates a Novel, Activity-Dependent, Homeostatic Intrinsic Plasticity

8/3/2019 Wendy W. Wu et al- Coupling of L-Type Ca^2+ Channels to KV7/KCNQ Channels Creates a Novel, Activity-Dependent, Homeostatic Intrinsic Plasticity

http://slidepdf.com/reader/full/wendy-w-wu-et-al-coupling-of-l-type-ca2-channels-to-kv7kcnq-channels-creates 10/13

Page 11: Wendy W. Wu et al- Coupling of L-Type Ca^2+ Channels to KV7/KCNQ Channels Creates a Novel, Activity-Dependent, Homeostatic Intrinsic Plasticity

8/3/2019 Wendy W. Wu et al- Coupling of L-Type Ca^2+ Channels to KV7/KCNQ Channels Creates a Novel, Activity-Dependent, Homeostatic Intrinsic Plasticity

http://slidepdf.com/reader/full/wendy-w-wu-et-al-coupling-of-l-type-ca2-channels-to-kv7kcnq-channels-creates 11/13

Page 12: Wendy W. Wu et al- Coupling of L-Type Ca^2+ Channels to KV7/KCNQ Channels Creates a Novel, Activity-Dependent, Homeostatic Intrinsic Plasticity

8/3/2019 Wendy W. Wu et al- Coupling of L-Type Ca^2+ Channels to KV7/KCNQ Channels Creates a Novel, Activity-Dependent, Homeostatic Intrinsic Plasticity

http://slidepdf.com/reader/full/wendy-w-wu-et-al-coupling-of-l-type-ca2-channels-to-kv7kcnq-channels-creates 12/13

Page 13: Wendy W. Wu et al- Coupling of L-Type Ca^2+ Channels to KV7/KCNQ Channels Creates a Novel, Activity-Dependent, Homeostatic Intrinsic Plasticity

8/3/2019 Wendy W. Wu et al- Coupling of L-Type Ca^2+ Channels to KV7/KCNQ Channels Creates a Novel, Activity-Dependent, Homeostatic Intrinsic Plasticity

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