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      Neuropathological profile of the pentylenetetrazol (PTZ) kindling model

      1 , 2
      International Journal of Neuroscience
      Informa UK Limited

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          ILAE official report: a practical clinical definition of epilepsy.

          Epilepsy was defined conceptually in 2005 as a disorder of the brain characterized by an enduring predisposition to generate epileptic seizures. This definition is usually practically applied as having two unprovoked seizures >24 h apart. The International League Against Epilepsy (ILAE) accepted recommendations of a task force altering the practical definition for special circumstances that do not meet the two unprovoked seizures criteria. The task force proposed that epilepsy be considered to be a disease of the brain defined by any of the following conditions: (1) At least two unprovoked (or reflex) seizures occurring >24 h apart; (2) one unprovoked (or reflex) seizure and a probability of further seizures similar to the general recurrence risk (at least 60%) after two unprovoked seizures, occurring over the next 10 years; (3) diagnosis of an epilepsy syndrome. Epilepsy is considered to be resolved for individuals who either had an age-dependent epilepsy syndrome but are now past the applicable age or who have remained seizure-free for the last 10 years and off antiseizure medicines for at least the last 5 years. "Resolved" is not necessarily identical to the conventional view of "remission or "cure." Different practical definitions may be formed and used for various specific purposes. This revised definition of epilepsy brings the term in concordance with common use. A PowerPoint slide summarizing this article is available for download in the Supporting Information section here. Wiley Periodicals, Inc. © 2014 International League Against Epilepsy.
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            Modification of seizure activity by electrical stimulation: II. Motor seizure

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              Heat shock proteins: modifying factors in physiological stress responses and acquired thermotolerance.

              Cells from virtually all organisms respond to a variety of stresses by the rapid synthesis of a highly conserved set of polypeptides termed heat shock proteins (HSPs). The precise functions of HSPs are unknown, but there is considerable evidence that these stress proteins are essential for survival at both normal and elevated temperatures. HSPs also appear to play a critical role in the development of thermotolerance and protection from cellular damage associated with stresses such as ischemia, cytokines, and energy depletion. These observations suggest that HSPs play an important role in both normal cellular homeostasis and the stress response. This mini-review examines recent evidence and hypotheses suggesting that the HSPs may be important modifying factors in cellular responses to a variety of physiologically relevant conditions such as hyperthermia, exercise, oxidative stress, metabolic challenge, and aging.
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                Author and article information

                Contributors
                (View ORCID Profile)
                (View ORCID Profile)
                Journal
                International Journal of Neuroscience
                International Journal of Neuroscience
                Informa UK Limited
                0020-7454
                1543-5245
                November 02 2018
                June 07 2018
                November 02 2018
                : 128
                : 11
                : 1086-1096
                Affiliations
                [1 ] Russian Academy of Sciences, Institute of Theoretical and Experimental Biophysics, Pushchino, Russia
                [2 ] Russian Academy of Sciences, Institute of Cell Biophysics, Pushchino, Russia
                Article
                10.1080/00207454.2018.1481064
                29792126
                575dffff-0836-4a87-8509-e500e2b7f21d
                © 2018
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