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10 - Cognitive Consequences of Epilepsy

A Global Perspective

from Section 3 - Consequences of Epilepsy

Published online by Cambridge University Press:  13 April 2017

Ennapadam S. Krishnamoorthy
Affiliation:
Institute of Neurological Sciences, Chennai
Simon D. Shorvon
Affiliation:
University College London
Steven C. Schachter
Affiliation:
Harvard Medical School, Massachusetts
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Chapter
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Epilepsy
A Global Approach
, pp. 50 - 54
Publisher: Cambridge University Press
Print publication year: 2017

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References

Shandera, W X, Kass, J S. Neurocysticercosis: current knowledge and advances. Curr Neurol Neurosci Rep 2006;6(6):453–59.CrossRefGoogle ScholarPubMed
DeGiorgio, C M, Medina, M T, Duron, R, Zee, C, Escueta, S P. Neurocysticercosis. Epilepsy Curr 2004;4(3):107–11.CrossRefGoogle ScholarPubMed
Del Brutto, O H. Neurocysticercosis in Western Europe: a re-emerging disease? Acta Neurol Belg 2012;112(4):335–43.CrossRefGoogle ScholarPubMed
DeGiorgio, C M, Sorvillo, F, Escueta, S P. Neurocysticercosis in the United States: review of an important emerging infection. Neurology 2005;64(8):1486.CrossRefGoogle ScholarPubMed
Johnston, A, Smith, P E. Epilepsy in the elderly. Expert Rev Neurother 2010;10(12):1899–910.CrossRefGoogle ScholarPubMed
Baxendale, S, Donnachie, E, Thompson, P, Sander, J W. Dysembryoplastic neuroepithelial tumours (DNT): a model for examining the effects of pathology vs. seizures on cognitive dysfunction in epilepsy. Epilepsia 2013;54(12):2214–18.CrossRefGoogle Scholar
Helmstaedter, C, Kockelmann, E. Cognitive outcomes in patients with chronic temporal lobe epilepsy. Epilepsia 2006;47(Suppl 2):9698.CrossRefGoogle ScholarPubMed
Holmes, G L. EEG abnormalities as a biomarker for cognitive comorbidities in pharmacoresistant epilepsy. Epilepsia 2013;54(Suppl 2):6062.CrossRefGoogle ScholarPubMed
Schmitz, B, Yacubian, E M, Feucht, M, Hermann, B, Trimble, M. Neuropsychology and behavior in juvenile myoclonic epilepsy. Epilepsy Behav 2013;28(Suppl 1):S72–73.Google Scholar
Wandschneider, B, Thompson, P J, Vollmar, C, Koepp, M J. Frontal lobe function and structure in juvenile myoclonic epilepsy: a comprehensive review of neuropsychological and imaging data. Epilepsia 2012;53(12):2091–98.Google Scholar
Nabbout, R. Autoimmune and inflammatory epilepsies. Epilepsia 2012;53(Suppl 4):5862.Google Scholar
Merwick, A, O’Brien, M, Delanty, N. Complex single gene disorders and epilepsy. Epilepsia 2012;53(Suppl 4):8191.CrossRefGoogle ScholarPubMed
Ijff, D M, Aldenkamp, A P. Cognitive side-effects of antiepileptic drugs in children. Handb Clin Neurol 2013;111:707–18.CrossRefGoogle ScholarPubMed
Yasuda, C L, Centeno, M, Vollmar, C, et al. The effect of topiramate on cognitive fMRI. Epilepsy Res 2013;105(1–2):250–55.CrossRefGoogle ScholarPubMed
Devinsky, O. Cognitive and behavioral effects of antiepileptic drugs. Epilepsia 1995;36(Suppl 2):S46S65.CrossRefGoogle ScholarPubMed
Gualtieri, C T, Johnson, L G. Comparative neurocognitive effects of 5 psychotropic anticonvulsants and lithium. MedGenMed 2006;8(3):46.Google ScholarPubMed
Baxendale, S, Thompson, P J, Duncan, J S. Improvements in memory function following anterior temporal lobe resection for epilepsy. Neurology 2008;71(17):1319–25.Google Scholar
Chelune, G J. Hippocampal adequacy versus functional reserve: predicting memory functions following temporal lobectomy. Arch Clin Neuropsychol 1995;10(5):413–32.CrossRefGoogle ScholarPubMed
Thompson, P J, Duncan, J S. Cognitive decline in severe intractable epilepsy. Epilepsia 2005;46(11):1780–87.Google Scholar
Elger, C E, Helmstaedter, C, Kurthen, M. Chronic epilepsy and cognition. Lancet Neurol 2004;3(11):663–72.CrossRefGoogle ScholarPubMed
Warren, D E, Duff, M C, Magnotta, V, et al. Long-term neuropsychological, neuroanatomical, and life outcome in hippocampal amnesia. Clin Neuropsychol 2012;26(2):335–69.CrossRefGoogle ScholarPubMed
Neville, B G, Scott, R C. Re: severe memory impairment in a child with bihippocampal injury after status epilepticus. Dev Med Child Neurol 2007;49(5):398–99.CrossRefGoogle Scholar
Dietl, T, Urbach, H, Helmstaedter, C, et al. Persistent severe amnesia due to seizure recurrence after unilateral temporal lobectomy. Epilepsy Behav 2004;5(3):394400.Google Scholar
Ciampi de, A D, Rodrigues, C L, Abraham, R, et al. Cognitive impairment and dementia in neurocysticercosis: a cross-sectional controlled study. Neurology 2010;74(16):1288–95.Google Scholar
Bianchin, M M, Dal, P A, Scotta, C L, et al. Cognitive impairment and dementia in neurocysticercosis: a cross-sectional controlled study. Neurology 2010;75(11):1028–29.CrossRefGoogle ScholarPubMed
Vyas, A, Kim, S K, Giacomini, N, Boothroyd, J C, Sapolsky, R M. Behavioral changes induced by Toxoplasma infection of rodents are highly specific to aversion of cat odors. Proc Natl Acad Sci USA 2007;104(15):6442–47.Google Scholar
Vyas, A. Parasite-augmented mate choice and reduction in innate fear in rats infected by Toxoplasma gondii. J Exp Biol 2013;216(Pt 1):120–26.CrossRefGoogle ScholarPubMed
Rodrigues, C L, de Andrade, D C, Livramento, J A, et al. Spectrum of cognitive impairment in neurocysticercosis: differences according to disease phase. Neurology 2012;78(12):861–66.Google Scholar

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