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Items: 1 to 20 of 101

1.

The information content of physiological and epileptic brain activity.

Trevelyan AJ, Bruns W, Mann EO, Crepel V, Scanziani M.

J Physiol. 2013 Feb 15;591(4):799-805. doi: 10.1113/jphysiol.2012.240358. Epub 2012 Oct 1. Review.

2.

Recording human electrocorticographic (ECoG) signals for neuroscientific research and real-time functional cortical mapping.

Hill NJ, Gupta D, Brunner P, Gunduz A, Adamo MA, Ritaccio A, Schalk G.

J Vis Exp. 2012 Jun 26;(64). pii: 3993. doi: 10.3791/3993.

3.

Cortical inhibition, pH and cell excitability in epilepsy: what are optimal targets for antiepileptic interventions?

Pavlov I, Kaila K, Kullmann DM, Miles R.

J Physiol. 2013 Feb 15;591(4):765-74. doi: 10.1113/jphysiol.2012.237958. Epub 2012 Aug 13. Review.

4.

Macromolecular crowding: chemistry and physics meet biology (Ascona, Switzerland, 10-14 June 2012).

Foffi G, Pastore A, Piazza F, Temussi PA.

Phys Biol. 2013 Aug 2;10(4):040301. [Epub ahead of print]

PMID:
23912807
5.
6.

How inhibition influences seizure propagation.

Trevelyan AJ, Schevon CA.

Neuropharmacology. 2013 Jun;69:45-54. doi: 10.1016/j.neuropharm.2012.06.015. Epub 2012 Jun 18. Review.

PMID:
22722026
7.

Neocortical slices from adult chronic epileptic rats exhibit discharges of higher voltages and broader spread.

Serafini R, Dettloff S, Loeb JA.

Neuroscience. 2016 May 13;322:509-24. doi: 10.1016/j.neuroscience.2016.02.026. Epub 2016 Feb 16.

PMID:
26892299
8.

Neuronal firing patterns from epileptogenic foci of monkey and human.

Wyler AR, Ward AA Jr.

Adv Neurol. 1986;44:967-89.

PMID:
3085439
9.

The role of inhibition in epileptic networks.

Trevelyan AJ, Muldoon SF, Merricks EM, Racca C, Staley KJ.

J Clin Neurophysiol. 2015 Jun;32(3):227-34. doi: 10.1097/WNP.0000000000000160. Review.

PMID:
26035675
10.

Heterogeneous neuronal firing patterns during interictal epileptiform discharges in the human cortex.

Keller CJ, Truccolo W, Gale JT, Eskandar E, Thesen T, Carlson C, Devinsky O, Kuzniecky R, Doyle WK, Madsen JR, Schomer DL, Mehta AD, Brown EN, Hochberg LR, Ulbert I, Halgren E, Cash SS.

Brain. 2010 Jun;133(Pt 6):1668-81. doi: 10.1093/brain/awq112.

11.

Ictal but not interictal epileptic discharges activate astrocyte endfeet and elicit cerebral arteriole responses.

Gómez-Gonzalo M, Losi G, Brondi M, Uva L, Sato SS, de Curtis M, Ratto GM, Carmignoto G.

Front Cell Neurosci. 2011 Jun 17;5:8. doi: 10.3389/fncel.2011.00008. eCollection 2011.

12.

Effects of changes in cortical excitability upon the epileptic bursts in generalized penicillin epilepsy of the cat.

Gloor P, Pellegrini A, Kostopoulos GK.

Electroencephalogr Clin Neurophysiol. 1979 Mar;46(3):274-89.

PMID:
85521
13.

How to establish causality in epilepsy surgery.

Asano E, Brown EC, Juhász C.

Brain Dev. 2013 Sep;35(8):706-20. doi: 10.1016/j.braindev.2013.04.004. Epub 2013 May 15. Review.

14.

Hippocampal microcircuit dynamics probed using optical imaging approaches.

Coulter DA, Yue C, Ang CW, Weissinger F, Goldberg E, Hsu FC, Carlson GC, Takano H.

J Physiol. 2011 Apr 15;589(Pt 8):1893-903. doi: 10.1113/jphysiol.2010.202184. Epub 2011 Jan 10. Review.

15.
16.

Hippocampal slices in experimental and human epilepsy.

Schwartzkroin PA.

Adv Neurol. 1986;44:991-1010.

PMID:
3706029
17.

Travelling waves and EEG patterns during epileptic seizure: analysis with an integrate-and-fire neural network.

Ursino M, La Cara GE.

J Theor Biol. 2006 Sep 7;242(1):171-87. Epub 2006 Apr 19.

PMID:
16620870
18.
19.

Epileptic discharge of cortical, subcortical and spinal neurons in penicillin induced experimental epilepsy.

Mameli O, Melis F, Caria MA, Solinas A, Mameli S, De Riu PL.

Arch Ital Biol. 1999 Feb;137(1):29-46.

PMID:
9934432
20.

Different structures involved during ictal and interictal epileptic activity in malformations of cortical development: an EEG-fMRI study.

Tyvaert L, Hawco C, Kobayashi E, LeVan P, Dubeau F, Gotman J.

Brain. 2008 Aug;131(Pt 8):2042-60. doi: 10.1093/brain/awn145. Epub 2008 Jul 16.

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