Dentate gyrus network model (Tejada et al 2014)


Tejada J, Garcia-Cairasco N, Roque AC. (2014). Combined role of seizure-induced dendritic morphology alterations and spine loss in newborn granule cells with mossy fiber sprouting on the hyperexcitability of a computer model of the dentate gyrus. PLoS computational biology. 10 [PubMed]

See more from authors: Tejada J · Garcia-Cairasco N · Roque AC

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Tejada J, Arisi GM, García-Cairasco N, Roque AC. (2012). Morphological alterations in newly born dentate gyrus granule cells that emerge after status epilepticus contribute to make them less excitable. PloS one. 7 [PubMed]

See more from authors: Tejada J · Arisi GM · García-Cairasco N · Roque AC

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References and models that cite this paper

Galati DF, Hiester BG, Jones KR. (2016). Computer Simulations Support a Morphological Contribution to BDNF Enhancement of Action Potential Generation. Frontiers in cellular neuroscience. 10 [PubMed]

Tejada J, Garcia-Cairasco N, Roque AC. (2014). Combined role of seizure-induced dendritic morphology alterations and spine loss in newborn granule cells with mossy fiber sprouting on the hyperexcitability of a computer model of the dentate gyrus. PLoS computational biology. 10 [PubMed]

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