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9.18 - Epilepsy and Seizures

from 9 - Integrated Neurobiology of Specific Syndromes and Treatments

Published online by Cambridge University Press:  08 November 2023

Mary-Ellen Lynall
Affiliation:
University of Cambridge
Peter B. Jones
Affiliation:
University of Cambridge
Stephen M. Stahl
Affiliation:
University of California, San Diego
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Summary

This section begins with a definition of epilepsy and the different types of seizure. Next, I describe epileptogenes, the process leading to a hyperexcitable neuronal network which is predisposed to seizures. I consider the biological mechanisms thought to contribute to this, at the ion-channel, cell and network level, followed by a description of how investigations including EEG, MRI and genetic testing contribute to the understanding and management of epilepsy in individual patients. Finally, I discuss the neuropsychiatric symptoms associated with epilepsy, and the range of factors that may contribute to these.

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Chapter
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Publisher: Cambridge University Press
Print publication year: 2023

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References

National Institute for Health and Care Excellence. Epilepsies: diagnosis and management. Clinical guideline. NICE, 2012.Google Scholar
Fisher, RS, Acevedo, C, Arzimanoglou, A et al. A practical clinical definition of epilepsy. Epilepsia 2014: 55(4): 475482.CrossRefGoogle ScholarPubMed
Fisher, RS, van Emde Boas, W, Blume, W et al. Epileptic seizures and epilepsy: definitions proposed by the International League Against Epilepsy (ILAE) and the International Bureau for Epilepsy (IBE). Epilepsia 2005; 46: 470472.CrossRefGoogle ScholarPubMed
Fisher, RS, Cross, H, French, JA. Operational classification of seizure types by the International League Against Epilepsy: Position Paper of the ILAE Commission for Classification and Terminology. Epilepsia 2017: 58(4): 522530.CrossRefGoogle Scholar
Staley, K. Molecular mechanisms of epilepsy. Nat Neurosci 2015; 18(3): 367372.CrossRefGoogle ScholarPubMed
Kaeser, PS, Regehr, WG. Molecular mechanisms for synchronous, asynchronous, and spontaneous neurotransmitter release. Annu Rev Physiol 2014; 76: 333363.CrossRefGoogle ScholarPubMed
Rajakulendran, S, Kaski, D, Hanna, MG. Neuronal P/Q-type calcium channel dysfunction in inherited disorders of the CNS. Nat Rev Neurol; 2012; 8(2): 8696.CrossRefGoogle ScholarPubMed
Lazarevic, V, Pothula, S, Andres-Alonso, M, Fejtova, A. Molecular mechanisms driving homeostatic plasticity of neurotransmitter release. Front Cell Neurosci 2013; 7: 244.CrossRefGoogle ScholarPubMed
Staley, K. Molecular mechanisms of epilepsy. Nat Neurosci 2015; 18(3): 367372.CrossRefGoogle ScholarPubMed
Smith, SJ. EEG in the diagnosis, classification, and management of patients with epilepsy. J Neurol Neurosurg Psychiatry 2005; 76(Suppl II): ii2–ii7.CrossRefGoogle ScholarPubMed
Abou-Khalil, B, Auce, P et al. The International League Against Epilepsy Consortium on Complex Epilepsies. Genome-wide mega-analysis identifies 16 loci and highlights diverse biological mechanisms in the common epilepsies. Nat Commun 2018; 9: 5269.Google Scholar
Poduri, A. When should genetic testing be performed in epilepsy patients? Epilepsy Curr 2017; 17(1): 1622.CrossRefGoogle ScholarPubMed
Chang, YT, Chen, PC, Tsai, IJ et al. Bidirectional relation between schizophrenia and epilepsy: a population-based retrospective cohort study. Epilepsia 2011; 52: 20362042CrossRefGoogle ScholarPubMed
Hesdorffer, DC, Ishihara, L, Mynepalli, L et al. Epilepsy, suicidality, and psychiatric disorders: a bidirectional association. Ann Neurol 2012; 72: 184191.CrossRefGoogle ScholarPubMed
Clancy, MJ, Clarke, MC, Connor, DJ, Cannon, M, Cotter, DR. The prevalence of psychosis in epilepsy: a systematic review and meta-analysis. BMC Psychiatry 2014; 14: 75.CrossRefGoogle ScholarPubMed
Logsdail, S, Toone, B. Post-ictal psychoses: a clinical and phenomenological description. Br J Psychiatry 1988; 152: 246252.CrossRefGoogle ScholarPubMed
Trimble, M, Kanner, A, Schmitz, B. Postictal psychosis. Epilepsy Behav 2010; 19: 159161.CrossRefGoogle ScholarPubMed
Christensen, J, Vestergaard, M, Sidenius, P, Agerbo, E. Epilepsy and risk of suicide: a population-based case–control study. Lancet Neurol 2007; 6: 693698.CrossRefGoogle ScholarPubMed
Lönnqvist, JK. Psychiatric aspects of suicide. In Hawton, K, van Heeringen, K (eds.), The International Handbook of Suicide and Attempted Suicide. John Wiley & Sons, 2000, pp. 107–120.Google Scholar
Hammers, A, Asselin, MC, Hinz, R et al. Upregulation of opioid receptor binding following spontaneous epileptic seizures. Brain 2007; 130: 10091016.CrossRefGoogle ScholarPubMed
Farrell, JS, Colangeli, R, Wolff, MD et al. Postictal hypoperfusion/hypoxia provides the foundation for a unified theory of seizure-induced brain abnormalities and behavioral dysfunction. Epilepsia 2017; 58(9): 14931501.CrossRefGoogle ScholarPubMed
Nakahara, S, Adachi, M, Ito, H et al. Hippocampal pathophysiology: commonality shared by temporal lobe epilepsy and psychiatric disorders. Neurosci J 2018: 4852359.Google Scholar
Hu, S, Sheng, WS, Ehrlich, LC, Peterson, PK, Chao, CC. Cytokine effects on glutamate uptake by human astrocytes. Neuroimmunomodulation 2000; 7: 153159.CrossRefGoogle ScholarPubMed
Baune, BT, Dannlowski, U, Domschke, K et al. The interleukin-1b (IL1B) gene is associated with failure to achieve remission and impaired emotion processing in major depression. Biol Psychiatry 2010; 67: 543549.CrossRefGoogle Scholar

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