https://childnervoussystem.blogspot.com/2016/10/a-biomarker-for-epileptogenesis.html
pediatric neurology: A biomarker for epileptogenesis?
After a child has an unprovoked seizure, the burning question in everyone's mind is: Does this mean this child is going to have more seizur...
pediatric neurologybiomarker
https://pmc.ncbi.nlm.nih.gov/articles/PMC10771472/
Circulating microRNAs from plasma as preclinical biomarkers of epileptogenesis and epilepsy - PMC
Epilepsy frequently develops as a result of brain insult; however, there are no tools allowing to predict which patients suffering from trauma will eventually...
preclinical biomarkers
https://experts.umn.edu/en/publications/elevation-of-mmp-9-levels-promotes-epileptogenesis-after-traumati/
Elevation of MMP-9 Levels Promotes Epileptogenesis After Traumatic Brain Injury - Experts@Minnesota
https://cordis.europa.eu/project/id/865592/reporting
Oncometabolitic control of tumor growth and epileptogenesis in IDH mutated gliomas: D2HG signaling...
Latest report summary
https://www.research.va.gov/about/funded_research/proj-details-FY2019.cfm?pid=507790
I01BX002949-01A1 - Functional contribution of adult-born neurons to epileptogenesis
functionalcontributionadultbornneurons
https://research.monash.edu/en/publications/sodium-selenate-retards-epileptogenesis-in-acquired-epilepsy-mode/
Sodium selenate retards epileptogenesis in acquired epilepsy models reversing changes in protein...
sodium selenateretards
https://research.monash.edu/en/publications/repeatedly-stressed-rats-have-enhanced-vulnerability-to-amygdala-/
Repeatedly stressed rats have enhanced vulnerability to amygdala kindling epileptogenesis - Monash...
repeatedlystressedratsenhanced
https://dukespace.lib.duke.edu/items/27bf9404-17ba-4f41-943a-b170a393f553
Regression of Epileptogenesis by Inhibiting Tropomyosin Kinase B Signaling following a Seizure.
OBJECTIVE:Temporal lobe epilepsy (TLE) is a devastating disease in which seizures persist in 35% of patients despite optimal use of antiseizure drugs. Clinical...
https://scholars.duke.edu/publication/1411968
Scholars@Duke publication: Regression of Epileptogenesis by Inhibiting Tropomyosin Kinase B...
scholarsdukepublicationregression