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Epilepsy

The Intersection of Neurosciences, Biology, Mathematics, Engineering, and Physics

Parameter

  • 578 Seiten
  • 21 Lesestunden

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Epilepsy affects around 1% of the global population, with about 20 million patients experiencing uncontrolled seizures despite multiple anti-seizure medications. This work integrates neurosciences, mathematics, computational sciences, engineering, physics, and clinical epileptology to provide a comprehensive knowledge base and research directions. It covers signal analysis, data conditioning, and both linear and non-linear analysis, alongside fundamental anatomical and neurophysiological concepts. The text aims to equip non-physicians with the necessary language to engage meaningfully with epileptologists and introduces physicians to dynamical theory and signal processing, essential for productive interdisciplinary collaboration. It draws parallels between epilepsy and other aperiodic phenomena like earthquakes to build a scientific foundation for epileptology and promote therapeutic advancements. Additionally, it reviews the spatiotemporal behavior of seizures, mechanisms of epileptogenesis and ictogenesis, and highlights nocturnal frontal lobe epilepsy as a promising area for seizure prediction. The book emphasizes the need for a deep understanding of dynamical, control, and system theories, bridging the cultural gaps that often hinder multidisciplinary efforts and fostering collaboration in the evolving field of dynamical epileptology.

Buchkauf

Epilepsy, Ivan Osorio, Mark G. Frei, Susan Arthurs, Hitten P. Zaveri

Sprache
Erscheinungsdatum
2011
Einband
(Hardcover),
Buchzustand
Gebraucht - Gut
Preis
113,99 €inkl. MwSt.

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Titel
Epilepsy
Untertitel
The Intersection of Neurosciences, Biology, Mathematics, Engineering, and Physics
Sprache
Englisch
Verlag
CRC Press
Erscheinungsdatum
2011
Einband
Hardcover
Seitenzahl
578
ISBN10
1439838852
ISBN13
9781439838853
Reihe
Beschreibung
Epilepsy affects around 1% of the global population, with about 20 million patients experiencing uncontrolled seizures despite multiple anti-seizure medications. This work integrates neurosciences, mathematics, computational sciences, engineering, physics, and clinical epileptology to provide a comprehensive knowledge base and research directions. It covers signal analysis, data conditioning, and both linear and non-linear analysis, alongside fundamental anatomical and neurophysiological concepts. The text aims to equip non-physicians with the necessary language to engage meaningfully with epileptologists and introduces physicians to dynamical theory and signal processing, essential for productive interdisciplinary collaboration. It draws parallels between epilepsy and other aperiodic phenomena like earthquakes to build a scientific foundation for epileptology and promote therapeutic advancements. Additionally, it reviews the spatiotemporal behavior of seizures, mechanisms of epileptogenesis and ictogenesis, and highlights nocturnal frontal lobe epilepsy as a promising area for seizure prediction. The book emphasizes the need for a deep understanding of dynamical, control, and system theories, bridging the cultural gaps that often hinder multidisciplinary efforts and fostering collaboration in the evolving field of dynamical epileptology.