Targeting oxidative stress improves disease outcomes in a rat model of acquired epilepsy.
about
Biomarkers of Epileptogenesis: The Focus on Glia and Cognitive Dysfunctions.Metabolic and Homeostatic Changes in Seizures and Acquired Epilepsy-Mitochondria, Calcium Dynamics and Reactive Oxygen Species.A combination of NMDA and AMPA receptor antagonists retards granule cell dispersion and epileptogenesis in a model of acquired epilepsyMetabolic Dysfunction and Oxidative Stress in Epilepsy.Commonalities in epileptogenic processes from different acute brain insults: Do they translate?Pitfalls in the quantitative imaging of glutathione in living cells.Inflammation: A Network in the Pathogenesis of Status EpilepticusThe Free Radical Scavenger N-Tert-Butyl-α-Phenylnitrone (PBN) Administered to Immature Rats During Status Epilepticus Alters Neurogenesis and Has Variable Effects, Both Beneficial and Detrimental, on Long-Term OutcomesA companion to the preclinical common data elements for pharmacologic studies in animal models of seizures and epilepsy. A Report of the TASK3 Pharmacology Working Group of the ILAE/AES Joint Translational Task Force
P2860
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P2860
Targeting oxidative stress improves disease outcomes in a rat model of acquired epilepsy.
description
2017 nî lūn-bûn
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2017年の論文
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2017年論文
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2017年論文
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2017年論文
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2017年論文
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2017年論文
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2017年论文
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name
Targeting oxidative stress improves disease outcomes in a rat model of acquired epilepsy.
@en
type
label
Targeting oxidative stress improves disease outcomes in a rat model of acquired epilepsy.
@en
prefLabel
Targeting oxidative stress improves disease outcomes in a rat model of acquired epilepsy.
@en
P2093
P2860
P50
P356
P1433
P1476
Targeting oxidative stress improves disease outcomes in a rat model of acquired epilepsy
@en
P2093
Alberto Pauletti
Alessia Salamone
Andrey Y Abramov
Bianca R Villa
Daniel J Antoine
Eleonora Aronica
Ennio Del Giudice
Erwin A van Vliet
Gaetano Terrone
Li-Ping Liang
P2860
P304
P356
10.1093/BRAIN/AWX117
P407
P577
2017-07-01T00:00:00Z