Phillip A. Schwartzkroin

Affiliations: 
University of California, Davis, Davis, CA 
Area:
Epilepsy
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"Phillip Schwartzkroin"
Cross-listing: Neurotree

Parents

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Kao Liang Chow grad student Stanford (Neurotree)
Per Andersen post-doc University of Oslo, Norway (Neurotree)
David A. Prince post-doc 1978 Stanford

Children

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Joel S. F. Greenwood research assistant 1998-2001 University of Washington (Neurotree)
Paul S. Buckmaster grad student University of Washington (Neurotree)
Daryl Hochman grad student Duke (Neurotree)
Jeffrey S. Taube grad student University of Washington (Neurotree)
Leena  S. Knight (Patel) grad student 1998-2005 University of Washington (Neurotree)
Jong M. Rho post-doc (Neurotree)
Helen E. Scharfman post-doc Columbia (Neurotree)
Catherine S. Woolley post-doc Northwestern (Neurotree)
Ben W. Strowbridge post-doc 1995 Case Western (Neurotree)
Scott C. Baraban post-doc 1994-1997 University of Washington (Neurotree)
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Publications

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Schwartzkroin PA. (2012) Cellular bases of focal and generalized epilepsies. Handbook of Clinical Neurology. 107: 13-33
Knight LS, Wenzel HJ, Schwartzkroin PA. (2012) Inhibition and interneuron distribution in the dentate gyrus of p35 knockout mice. Epilepsia. 53: 161-70
Tschuluun N, Wenzel JH, Katleba K, et al. (2005) Initiation and spread of epileptiform discharges in the methylazoxymethanol acetate rat model of cortical dysplasia: functional and structural connectivity between CA1 heterotopia and hippocampus/neocortex. Neuroscience. 133: 327-42
Patel LS, Wenzel HJ, Schwartzkroin PA. (2004) Physiological and morphological characterization of dentate granule cells in the p35 knock-out mouse hippocampus: evidence for an epileptic circuit. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 24: 9005-14
Galvan CD, Wenzel JH, Dineley KT, et al. (2003) Postsynaptic contributions to hippocampal network hyperexcitability induced by chronic activity blockade in vivo. The European Journal of Neuroscience. 18: 1861-72
Bough KJ, Schwartzkroin PA, Rho JM. (2003) Calorie restriction and ketogenic diet diminish neuronal excitability in rat dentate gyrus in vivo. Epilepsia. 44: 752-60
Lopantsev V, Wenzel HJ, Cole TB, et al. (2003) Lack of vesicular zinc in mossy fibers does not affect synaptic excitability of CA3 pyramidal cells in zinc transporter 3 knockout mice. Neuroscience. 116: 237-48
Schwartzkroin PA, Rho JM. (2002) Preface International Review of Neurobiology. 49: xvi-xviii
Szot P, Weinshenker D, Rho JM, et al. (2001) Norepinephrine is required for the anticonvulsant effect of the ketogenic diet. Brain Research. Developmental Brain Research. 129: 211-4
Wenzel HJ, Robbins CA, Tsai LH, et al. (2001) Abnormal morphological and functional organization of the hippocampus in a p35 mutant model of cortical dysplasia associated with spontaneous seizures. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 21: 983-98
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