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Journal Abstract Search


583 related items for PubMed ID: 19931419

  • 1. Hippocampal damage after intra-amygdala kainic acid-induced status epilepticus and seizure preconditioning-mediated neuroprotection in SJL mice.
    Tanaka K, Jimenez-Mateos EM, Matsushima S, Taki W, Henshall DC.
    Epilepsy Res; 2010 Feb; 88(2-3):151-61. PubMed ID: 19931419
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  • 3. Hippocampal transcriptome after status epilepticus in mice rendered seizure damage-tolerant by epileptic preconditioning features suppressed calcium and neuronal excitability pathways.
    Jimenez-Mateos EM, Hatazaki S, Johnson MB, Bellver-Estelles C, Mouri G, Bonner C, Prehn JH, Meller R, Simon RP, Henshall DC.
    Neurobiol Dis; 2008 Dec; 32(3):442-53. PubMed ID: 18804535
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  • 4. Unilateral hippocampal CA3-predominant damage and short latency epileptogenesis after intra-amygdala microinjection of kainic acid in mice.
    Mouri G, Jimenez-Mateos E, Engel T, Dunleavy M, Hatazaki S, Paucard A, Matsushima S, Taki W, Henshall DC.
    Brain Res; 2008 Jun 05; 1213():140-51. PubMed ID: 18455706
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  • 5. Resistance of immature hippocampus to morphologic and physiologic alterations following status epilepticus or kindling.
    Haas KZ, Sperber EF, Opanashuk LA, Stanton PK, Moshé SL.
    Hippocampus; 2001 Jun 05; 11(6):615-25. PubMed ID: 11811655
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  • 6. [Experimental limbic seizure status epilepticus and focus resection in cats].
    Tanaka T, Tanaka S, Yonemasu Y.
    No To Shinkei; 1989 Dec 05; 41(12):1239-44. PubMed ID: 2627542
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  • 8. Spatio-temporally restricted blood-brain barrier disruption after intra-amygdala kainic acid-induced status epilepticus in mice.
    Michalak Z, Sano T, Engel T, Miller-Delaney SF, Lerner-Natoli M, Henshall DC.
    Epilepsy Res; 2013 Feb 05; 103(2-3):167-79. PubMed ID: 23182415
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  • 11. Distinct behavioral and epileptic phenotype differences in 129/P mice compared to C57BL/6 mice subject to intraamygdala kainic acid-induced status epilepticus.
    Almeida Silva LF, Engel T, Reschke CR, Conroy RM, Langa E, Henshall DC.
    Epilepsy Behav; 2016 Nov 05; 64(Pt A):186-194. PubMed ID: 27744244
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  • 12. Characterization of neuronal death induced by focally evoked limbic seizures in the C57BL/6 mouse.
    Araki T, Simon RP, Taki W, Lan JQ, Henshall DC.
    J Neurosci Res; 2002 Sep 01; 69(5):614-21. PubMed ID: 12210827
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  • 13. High-frequency oscillations after status epilepticus: epileptogenesis and seizure genesis.
    Bragin A, Wilson CL, Almajano J, Mody I, Engel J.
    Epilepsia; 2004 Sep 01; 45(9):1017-23. PubMed ID: 15329064
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  • 17. Transcriptional upregulation of nitric oxide synthase II by nuclear factor-kappaB promotes apoptotic neuronal cell death in the hippocampus following experimental status epilepticus.
    Chuang YC, Chen SD, Lin TK, Chang WN, Lu CH, Liou CW, Chan SH, Chang AY.
    J Neurosci Res; 2010 Jul 01; 88(9):1898-907. PubMed ID: 20155797
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  • 18. Increased neocortical expression of the P2X7 receptor after status epilepticus and anticonvulsant effect of P2X7 receptor antagonist A-438079.
    Jimenez-Pacheco A, Mesuret G, Sanz-Rodriguez A, Tanaka K, Mooney C, Conroy R, Miras-Portugal MT, Diaz-Hernandez M, Henshall DC, Engel T.
    Epilepsia; 2013 Sep 01; 54(9):1551-61. PubMed ID: 23808395
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  • 19. Adenosine A1 receptors are crucial in keeping an epileptic focus localized.
    Fedele DE, Li T, Lan JQ, Fredholm BB, Boison D.
    Exp Neurol; 2006 Jul 01; 200(1):184-90. PubMed ID: 16750195
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  • 20. A guinea pig model of mesial temporal lobe epilepsy following nonconvulsive status epilepticus induced by unilateral intrahippocampal injection of kainic acid.
    Carriero G, Arcieri S, Cattalini A, Corsi L, Gnatkovsky V, de Curtis M.
    Epilepsia; 2012 Nov 01; 53(11):1917-27. PubMed ID: 22998690
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