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Journal Abstract Search


138 related items for PubMed ID: 31254842

  • 1. Genetic absence epilepsy: Effective connectivity from piriform cortex to mediodorsal thalamus.
    Young JC, Paolini AG, Pedersen M, Jackson GD.
    Epilepsy Behav; 2019 Aug; 97():219-228. PubMed ID: 31254842
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  • 3. Comparing glutamatergic neuron population in the mediodorsal thalamic nucleus of genetic absence epilepsy rats from strasbourg (GAERS) and normal control Wistar rats.
    Çavdar S, Özgür M, Kirazlı Ö, Karahüseyinoğlu S, Onat F.
    J Chem Neuroanat; 2016 Nov; 77():93-99. PubMed ID: 27262783
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  • 5. Local cerebral glucose utilization in adult and immature GAERS.
    Nehlig A, Vergnes M, Boyet S, Marescaux C.
    Epilepsy Res; 1998 Sep; 32(1-2):206-12. PubMed ID: 9761321
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  • 7. Do the quantitative relationships of synaptic junctions and terminals in the thalamus of genetic absence epilepsy rats from Strasbourg (GAERS) differ from those in normal control Wistar rats.
    Cavdar S, Hacıoğlu H, Doğukan SY, Onat F.
    Neurol Sci; 2012 Apr; 33(2):251-9. PubMed ID: 21720899
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  • 8. Early alterations of the neuronal network processing whisker-related sensory signal during absence epileptogenesis.
    Laghouati E, Studer F, Depaulis A, Guillemain I.
    Epilepsia; 2022 Feb; 63(2):497-509. PubMed ID: 34919740
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  • 10. Thalamic low threshold calcium current in a genetic model of absence epilepsy.
    Guyon A, Vergnes M, Leresche N.
    Neuroreport; 1993 Sep 10; 4(11):1231-4. PubMed ID: 8219019
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  • 12. Epileptiform activity induced by 4-aminopyridine in entorhinal cortex hippocampal slices of rats with a genetically determined absence epilepsy (GAERS).
    Armand V, Hoffmann P, Vergnes M, Heinemann U.
    Brain Res; 1999 Sep 11; 841(1-2):62-9. PubMed ID: 10546988
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  • 15. Thalamocortical relationships and network synchronization in a new genetic model "in mirror" for absence epilepsy.
    Gigout S, Louvel J, Rinaldi D, Martin B, Pumain R.
    Brain Res; 2013 Aug 07; 1525():39-52. PubMed ID: 23743261
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  • 16. Experimental petit mal-like seizure induced by microinjection of kainic acid into the unilateral mediodorsal nucleus of the thalamus.
    Kato K, Urino T, Hori T, Tsuda H, Yoshida K, Hashizume K, Tanaka T.
    Neurol Med Chir (Tokyo); 2008 Jul 07; 48(7):285-90; discussion 290-1. PubMed ID: 18654046
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  • 17. Alterations in hippocampal and cortical densities of functionally different interneurons in rat models of absence epilepsy.
    Papp P, Kovács Z, Szocsics P, Juhász G, Maglóczky Z.
    Epilepsy Res; 2018 Sep 07; 145():40-50. PubMed ID: 29885592
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  • 18. The effect of generalized absence seizures on the progression of kindling in the rat.
    Onat FY, Aker RG, Gurbanova AA, Ateş N, van Luijtelaar G.
    Epilepsia; 2007 Sep 07; 48 Suppl 5():150-6. PubMed ID: 17910595
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  • 19. Thalamic mediodorsal and intralaminar nuclear lesions disrupt the generation of experimentally induced generalized absence-like seizures in rats.
    Banerjee PK, Snead OC.
    Epilepsy Res; 1994 Mar 07; 17(3):193-205. PubMed ID: 8013443
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  • 20. Epileptiform activity and changes in field potential responses induced by low [Mg2+]0 in a genetic rat model of absence epilepsy.
    Armand V, Gabriel S, Hoffmann P, Heinemann U, Vergnes M.
    Brain Res; 1998 Aug 24; 803(1-2):19-26. PubMed ID: 9729248
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