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Journal Abstract Search


244 related items for PubMed ID: 1880549

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  • 5. NMDA-dependent currents in granule cells of the dentate gyrus contribute to induction but not permanence of kindling.
    Sayin, Rutecki P, Sutula T.
    J Neurophysiol; 1999 Feb; 81(2):564-74. PubMed ID: 10036260
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  • 6. Recurrent excitatory connectivity in the dentate gyrus of kindled and kainic acid-treated rats.
    Lynch M, Sutula T.
    J Neurophysiol; 2000 Feb; 83(2):693-704. PubMed ID: 10669485
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  • 7. Amygdala kindling develops without mossy fiber sprouting and hippocampal neuronal degeneration in rats.
    Osawa M, Uemura S, Kimura H, Sato M.
    Psychiatry Clin Neurosci; 2001 Dec; 55(6):549-57. PubMed ID: 11737786
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  • 8. Ultrastructural features of sprouted mossy fiber synapses in kindled and kainic acid-treated rats.
    Cavazos JE, Zhang P, Qazi R, Sutula TP.
    J Comp Neurol; 2003 Apr 07; 458(3):272-92. PubMed ID: 12619081
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  • 9. 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 Apr 07; 11(6):615-25. PubMed ID: 11811655
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  • 10. In contrast to kindled seizures, the frequency of spontaneous epilepsy in the limbic status model correlates with greater aberrant fascia dentata excitatory and inhibitory axon sprouting, and increased staining for N-methyl-D-aspartate, AMPA and GABA(A) receptors.
    Mathern GW, Bertram EH, Babb TL, Pretorius JK, Kuhlman PA, Spradlin S, Mendoza D.
    Neuroscience; 1997 Apr 07; 77(4):1003-19. PubMed ID: 9130782
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  • 11. Recurrent mossy fiber pathway in rat dentate gyrus: synaptic currents evoked in presence and absence of seizure-induced growth.
    Okazaki MM, Molnár P, Nadler JV.
    J Neurophysiol; 1999 Apr 07; 81(4):1645-60. PubMed ID: 10200201
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  • 12. The effects of fimbria/fornix transections on perforant path kindling and mossy fiber sprouting.
    Mohapel P, Armitage LL, Hannesson DK, Corcoran ME.
    Brain Res; 1997 Dec 05; 778(1):186-93. PubMed ID: 9462891
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  • 13. Mossy fiber synaptic reorganization in the epileptic human temporal lobe.
    Sutula T, Cascino G, Cavazos J, Parada I, Ramirez L.
    Ann Neurol; 1989 Sep 05; 26(3):321-30. PubMed ID: 2508534
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  • 14. [Correlation between hippocampal mossy fiber sprouting and synaptic reorganization and mechanisms of temporal lobe epilepsy].
    Lin H, Wu LW, Huang YG, Chen YC, Wen XN.
    Zhonghua Yi Xue Za Zhi; 2007 Jan 30; 87(5):341-4. PubMed ID: 17456365
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  • 15. Electrophysiology of dentate granule cells after kainate-induced synaptic reorganization of the mossy fibers.
    Cronin J, Obenaus A, Houser CR, Dudek FE.
    Brain Res; 1992 Feb 28; 573(2):305-10. PubMed ID: 1504768
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  • 16. Limbic epileptogenicity, cell loss and axonal reorganization induced by audiogenic and amygdala kindling in wistar audiogenic rats (WAR strain).
    Galvis-Alonso OY, Cortes De Oliveira JA, Garcia-Cairasco N.
    Neuroscience; 2004 Feb 28; 125(3):787-802. PubMed ID: 15099692
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  • 18. Neuroethological and morphological (Neo-Timm staining) correlates of limbic recruitment during the development of audiogenic kindling in seizure susceptible Wistar rats.
    Garcia-Cairasco N, Wakamatsu H, Oliveira JA, Gomes EL, Del Bel EA, Mello LE.
    Epilepsy Res; 1996 Dec 28; 26(1):177-92. PubMed ID: 8985699
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  • 19. Synaptic and axonal remodeling of mossy fibers in the hilus and supragranular region of the dentate gyrus in kainate-treated rats.
    Sutula T, Zhang P, Lynch M, Sayin U, Golarai G, Rod R.
    J Comp Neurol; 1998 Jan 26; 390(4):578-94. PubMed ID: 9450537
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  • 20. Unmasking recurrent excitation generated by mossy fiber sprouting in the epileptic dentate gyrus: an emergent property of a complex system.
    Sutula TP, Dudek FE.
    Prog Brain Res; 2007 Jan 26; 163():541-63. PubMed ID: 17765737
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